netback.c 42.0 KB
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/*
 * Back-end of the driver for virtual network devices. This portion of the
 * driver exports a 'unified' network-device interface that can be accessed
 * by any operating system that implements a compatible front end. A
 * reference front-end implementation can be found in:
 *  drivers/net/xen-netfront.c
 *
 * Copyright (c) 2002-2005, K A Fraser
 *
 * This program is free software; you can redistribute it and/or
 * modify it under the terms of the GNU General Public License version 2
 * as published by the Free Software Foundation; or, when distributed
 * separately from the Linux kernel or incorporated into other
 * software packages, subject to the following license:
 *
 * Permission is hereby granted, free of charge, to any person obtaining a copy
 * of this source file (the "Software"), to deal in the Software without
 * restriction, including without limitation the rights to use, copy, modify,
 * merge, publish, distribute, sublicense, and/or sell copies of the Software,
 * and to permit persons to whom the Software is furnished to do so, subject to
 * the following conditions:
 *
 * The above copyright notice and this permission notice shall be included in
 * all copies or substantial portions of the Software.
 *
 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
 * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
 * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
 * IN THE SOFTWARE.
 */

#include "common.h"

#include <linux/kthread.h>
#include <linux/if_vlan.h>
#include <linux/udp.h>

#include <net/tcp.h>

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#include <xen/xen.h>
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#include <xen/events.h>
#include <xen/interface/memory.h>

#include <asm/xen/hypercall.h>
#include <asm/xen/page.h>

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/* Provide an option to disable split event channels at load time as
 * event channels are limited resource. Split event channels are
 * enabled by default.
 */
bool separate_tx_rx_irq = 1;
module_param(separate_tx_rx_irq, bool, 0644);

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/*
 * This is the maximum slots a skb can have. If a guest sends a skb
 * which exceeds this limit it is considered malicious.
 */
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#define FATAL_SKB_SLOTS_DEFAULT 20
static unsigned int fatal_skb_slots = FATAL_SKB_SLOTS_DEFAULT;
module_param(fatal_skb_slots, uint, 0444);

/*
 * To avoid confusion, we define XEN_NETBK_LEGACY_SLOTS_MAX indicating
 * the maximum slots a valid packet can use. Now this value is defined
 * to be XEN_NETIF_NR_SLOTS_MIN, which is supposed to be supported by
 * all backend.
 */
#define XEN_NETBK_LEGACY_SLOTS_MAX XEN_NETIF_NR_SLOTS_MIN
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/*
 * If head != INVALID_PENDING_RING_IDX, it means this tx request is head of
 * one or more merged tx requests, otherwise it is the continuation of
 * previous tx request.
 */
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static inline int pending_tx_is_head(struct xenvif *vif, RING_IDX idx)
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{
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	return vif->pending_tx_info[idx].head != INVALID_PENDING_RING_IDX;
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}

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static void xenvif_idx_release(struct xenvif *vif, u16 pending_idx,
			       u8 status);

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static void make_tx_response(struct xenvif *vif,
			     struct xen_netif_tx_request *txp,
			     s8       st);
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static inline int tx_work_todo(struct xenvif *vif);
static inline int rx_work_todo(struct xenvif *vif);

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static struct xen_netif_rx_response *make_rx_response(struct xenvif *vif,
					     u16      id,
					     s8       st,
					     u16      offset,
					     u16      size,
					     u16      flags);

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static inline unsigned long idx_to_pfn(struct xenvif *vif,
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				       u16 idx)
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{
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	return page_to_pfn(vif->mmap_pages[idx]);
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}

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static inline unsigned long idx_to_kaddr(struct xenvif *vif,
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					 u16 idx)
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{
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	return (unsigned long)pfn_to_kaddr(idx_to_pfn(vif, idx));
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}

/*
 * This is the amount of packet we copy rather than map, so that the
 * guest can't fiddle with the contents of the headers while we do
 * packet processing on them (netfilter, routing, etc).
 */
#define PKT_PROT_LEN    (ETH_HLEN + \
			 VLAN_HLEN + \
			 sizeof(struct iphdr) + MAX_IPOPTLEN + \
			 sizeof(struct tcphdr) + MAX_TCP_OPTION_SPACE)

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static u16 frag_get_pending_idx(skb_frag_t *frag)
{
	return (u16)frag->page_offset;
}

static void frag_set_pending_idx(skb_frag_t *frag, u16 pending_idx)
{
	frag->page_offset = pending_idx;
}

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static inline pending_ring_idx_t pending_index(unsigned i)
{
	return i & (MAX_PENDING_REQS-1);
}

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static inline pending_ring_idx_t nr_pending_reqs(struct xenvif *vif)
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{
	return MAX_PENDING_REQS -
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		vif->pending_prod + vif->pending_cons;
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}

static int max_required_rx_slots(struct xenvif *vif)
{
	int max = DIV_ROUND_UP(vif->dev->mtu, PAGE_SIZE);

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	/* XXX FIXME: RX path dependent on MAX_SKB_FRAGS */
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	if (vif->can_sg || vif->gso || vif->gso_prefix)
		max += MAX_SKB_FRAGS + 1; /* extra_info + frags */

	return max;
}

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int xenvif_rx_ring_full(struct xenvif *vif)
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{
	RING_IDX peek   = vif->rx_req_cons_peek;
	RING_IDX needed = max_required_rx_slots(vif);

	return ((vif->rx.sring->req_prod - peek) < needed) ||
	       ((vif->rx.rsp_prod_pvt + XEN_NETIF_RX_RING_SIZE - peek) < needed);
}

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int xenvif_must_stop_queue(struct xenvif *vif)
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{
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	if (!xenvif_rx_ring_full(vif))
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		return 0;

	vif->rx.sring->req_event = vif->rx_req_cons_peek +
		max_required_rx_slots(vif);
	mb(); /* request notification /then/ check the queue */

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	return xenvif_rx_ring_full(vif);
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}

/*
 * Returns true if we should start a new receive buffer instead of
 * adding 'size' bytes to a buffer which currently contains 'offset'
 * bytes.
 */
static bool start_new_rx_buffer(int offset, unsigned long size, int head)
{
	/* simple case: we have completely filled the current buffer. */
	if (offset == MAX_BUFFER_OFFSET)
		return true;

	/*
	 * complex case: start a fresh buffer if the current frag
	 * would overflow the current buffer but only if:
	 *     (i)   this frag would fit completely in the next buffer
	 * and (ii)  there is already some data in the current buffer
	 * and (iii) this is not the head buffer.
	 *
	 * Where:
	 * - (i) stops us splitting a frag into two copies
	 *   unless the frag is too large for a single buffer.
	 * - (ii) stops us from leaving a buffer pointlessly empty.
	 * - (iii) stops us leaving the first buffer
	 *   empty. Strictly speaking this is already covered
	 *   by (ii) but is explicitly checked because
	 *   netfront relies on the first buffer being
	 *   non-empty and can crash otherwise.
	 *
	 * This means we will effectively linearise small
	 * frags but do not needlessly split large buffers
	 * into multiple copies tend to give large frags their
	 * own buffers as before.
	 */
	if ((offset + size > MAX_BUFFER_OFFSET) &&
	    (size <= MAX_BUFFER_OFFSET) && offset && !head)
		return true;

	return false;
}

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struct xenvif_count_slot_state {
	unsigned long copy_off;
	bool head;
};

unsigned int xenvif_count_frag_slots(struct xenvif *vif,
				     unsigned long offset, unsigned long size,
				     struct xenvif_count_slot_state *state)
{
	unsigned count = 0;

	offset &= ~PAGE_MASK;

	while (size > 0) {
		unsigned long bytes;

		bytes = PAGE_SIZE - offset;

		if (bytes > size)
			bytes = size;

		if (start_new_rx_buffer(state->copy_off, bytes, state->head)) {
			count++;
			state->copy_off = 0;
		}

		if (state->copy_off + bytes > MAX_BUFFER_OFFSET)
			bytes = MAX_BUFFER_OFFSET - state->copy_off;

		state->copy_off += bytes;

		offset += bytes;
		size -= bytes;

		if (offset == PAGE_SIZE)
			offset = 0;

		state->head = false;
	}

	return count;
}

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/*
 * Figure out how many ring slots we're going to need to send @skb to
 * the guest. This function is essentially a dry run of
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 * xenvif_gop_frag_copy.
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 */
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unsigned int xenvif_count_skb_slots(struct xenvif *vif, struct sk_buff *skb)
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{
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	struct xenvif_count_slot_state state;
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	unsigned int count;
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	unsigned char *data;
	unsigned i;
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	state.head = true;
	state.copy_off = 0;
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	/* Slot for the first (partial) page of data. */
	count = 1;
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	/* Need a slot for the GSO prefix for GSO extra data? */
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	if (skb_shinfo(skb)->gso_size)
		count++;

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	data = skb->data;
	while (data < skb_tail_pointer(skb)) {
		unsigned long offset = offset_in_page(data);
		unsigned long size = PAGE_SIZE - offset;
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		if (data + size > skb_tail_pointer(skb))
			size = skb_tail_pointer(skb) - data;
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		count += xenvif_count_frag_slots(vif, offset, size, &state);
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		data += size;
	}
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	for (i = 0; i < skb_shinfo(skb)->nr_frags; i++) {
		unsigned long size = skb_frag_size(&skb_shinfo(skb)->frags[i]);
		unsigned long offset = skb_shinfo(skb)->frags[i].page_offset;
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		count += xenvif_count_frag_slots(vif, offset, size, &state);
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	}
	return count;
}

struct netrx_pending_operations {
	unsigned copy_prod, copy_cons;
	unsigned meta_prod, meta_cons;
	struct gnttab_copy *copy;
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	struct xenvif_rx_meta *meta;
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	int copy_off;
	grant_ref_t copy_gref;
};

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static struct xenvif_rx_meta *get_next_rx_buffer(struct xenvif *vif,
						 struct netrx_pending_operations *npo)
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{
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	struct xenvif_rx_meta *meta;
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	struct xen_netif_rx_request *req;

	req = RING_GET_REQUEST(&vif->rx, vif->rx.req_cons++);

	meta = npo->meta + npo->meta_prod++;
	meta->gso_size = 0;
	meta->size = 0;
	meta->id = req->id;

	npo->copy_off = 0;
	npo->copy_gref = req->gref;

	return meta;
}

/*
 * Set up the grant operations for this fragment. If it's a flipping
 * interface, we also set up the unmap request from here.
 */
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static void xenvif_gop_frag_copy(struct xenvif *vif, struct sk_buff *skb,
				 struct netrx_pending_operations *npo,
				 struct page *page, unsigned long size,
				 unsigned long offset, int *head)
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{
	struct gnttab_copy *copy_gop;
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	struct xenvif_rx_meta *meta;
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	unsigned long bytes;

	/* Data must not cross a page boundary. */
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	BUG_ON(size + offset > PAGE_SIZE<<compound_order(page));
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	meta = npo->meta + npo->meta_prod - 1;

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	/* Skip unused frames from start of page */
	page += offset >> PAGE_SHIFT;
	offset &= ~PAGE_MASK;

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	while (size > 0) {
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		BUG_ON(offset >= PAGE_SIZE);
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		BUG_ON(npo->copy_off > MAX_BUFFER_OFFSET);

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		bytes = PAGE_SIZE - offset;

		if (bytes > size)
			bytes = size;

		if (start_new_rx_buffer(npo->copy_off, bytes, *head)) {
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			/*
			 * Netfront requires there to be some data in the head
			 * buffer.
			 */
			BUG_ON(*head);

			meta = get_next_rx_buffer(vif, npo);
		}

		if (npo->copy_off + bytes > MAX_BUFFER_OFFSET)
			bytes = MAX_BUFFER_OFFSET - npo->copy_off;

		copy_gop = npo->copy + npo->copy_prod++;
		copy_gop->flags = GNTCOPY_dest_gref;
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		copy_gop->len = bytes;

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		copy_gop->source.domid = DOMID_SELF;
		copy_gop->source.u.gmfn = virt_to_mfn(page_address(page));
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		copy_gop->source.offset = offset;

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		copy_gop->dest.domid = vif->domid;
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		copy_gop->dest.offset = npo->copy_off;
		copy_gop->dest.u.ref = npo->copy_gref;

		npo->copy_off += bytes;
		meta->size += bytes;

		offset += bytes;
		size -= bytes;

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		/* Next frame */
		if (offset == PAGE_SIZE && size) {
			BUG_ON(!PageCompound(page));
			page++;
			offset = 0;
		}

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		/* Leave a gap for the GSO descriptor. */
		if (*head && skb_shinfo(skb)->gso_size && !vif->gso_prefix)
			vif->rx.req_cons++;

		*head = 0; /* There must be something in this buffer now. */

	}
}

/*
 * Prepare an SKB to be transmitted to the frontend.
 *
 * This function is responsible for allocating grant operations, meta
 * structures, etc.
 *
 * It returns the number of meta structures consumed. The number of
 * ring slots used is always equal to the number of meta slots used
 * plus the number of GSO descriptors used. Currently, we use either
 * zero GSO descriptors (for non-GSO packets) or one descriptor (for
 * frontend-side LRO).
 */
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static int xenvif_gop_skb(struct sk_buff *skb,
			  struct netrx_pending_operations *npo)
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{
	struct xenvif *vif = netdev_priv(skb->dev);
	int nr_frags = skb_shinfo(skb)->nr_frags;
	int i;
	struct xen_netif_rx_request *req;
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	struct xenvif_rx_meta *meta;
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	unsigned char *data;
	int head = 1;
	int old_meta_prod;

	old_meta_prod = npo->meta_prod;

	/* Set up a GSO prefix descriptor, if necessary */
	if (skb_shinfo(skb)->gso_size && vif->gso_prefix) {
		req = RING_GET_REQUEST(&vif->rx, vif->rx.req_cons++);
		meta = npo->meta + npo->meta_prod++;
		meta->gso_size = skb_shinfo(skb)->gso_size;
		meta->size = 0;
		meta->id = req->id;
	}

	req = RING_GET_REQUEST(&vif->rx, vif->rx.req_cons++);
	meta = npo->meta + npo->meta_prod++;

	if (!vif->gso_prefix)
		meta->gso_size = skb_shinfo(skb)->gso_size;
	else
		meta->gso_size = 0;

	meta->size = 0;
	meta->id = req->id;
	npo->copy_off = 0;
	npo->copy_gref = req->gref;

	data = skb->data;
	while (data < skb_tail_pointer(skb)) {
		unsigned int offset = offset_in_page(data);
		unsigned int len = PAGE_SIZE - offset;

		if (data + len > skb_tail_pointer(skb))
			len = skb_tail_pointer(skb) - data;

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		xenvif_gop_frag_copy(vif, skb, npo,
				     virt_to_page(data), len, offset, &head);
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		data += len;
	}

	for (i = 0; i < nr_frags; i++) {
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		xenvif_gop_frag_copy(vif, skb, npo,
				     skb_frag_page(&skb_shinfo(skb)->frags[i]),
				     skb_frag_size(&skb_shinfo(skb)->frags[i]),
				     skb_shinfo(skb)->frags[i].page_offset,
				     &head);
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	}

	return npo->meta_prod - old_meta_prod;
}

/*
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 * This is a twin to xenvif_gop_skb.  Assume that xenvif_gop_skb was
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 * used to set up the operations on the top of
 * netrx_pending_operations, which have since been done.  Check that
 * they didn't give any errors and advance over them.
 */
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static int xenvif_check_gop(struct xenvif *vif, int nr_meta_slots,
			    struct netrx_pending_operations *npo)
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{
	struct gnttab_copy     *copy_op;
	int status = XEN_NETIF_RSP_OKAY;
	int i;

	for (i = 0; i < nr_meta_slots; i++) {
		copy_op = npo->copy + npo->copy_cons++;
		if (copy_op->status != GNTST_okay) {
			netdev_dbg(vif->dev,
				   "Bad status %d from copy to DOM%d.\n",
				   copy_op->status, vif->domid);
			status = XEN_NETIF_RSP_ERROR;
		}
	}

	return status;
}

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static void xenvif_add_frag_responses(struct xenvif *vif, int status,
				      struct xenvif_rx_meta *meta,
				      int nr_meta_slots)
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{
	int i;
	unsigned long offset;

	/* No fragments used */
	if (nr_meta_slots <= 1)
		return;

	nr_meta_slots--;

	for (i = 0; i < nr_meta_slots; i++) {
		int flags;
		if (i == nr_meta_slots - 1)
			flags = 0;
		else
			flags = XEN_NETRXF_more_data;

		offset = 0;
		make_rx_response(vif, meta[i].id, status, offset,
				 meta[i].size, flags);
	}
}

struct skb_cb_overlay {
	int meta_slots_used;
};

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static void xenvif_kick_thread(struct xenvif *vif)
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{
	wake_up(&vif->wq);
}

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void xenvif_rx_action(struct xenvif *vif)
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{
	s8 status;
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	u16 flags;
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	struct xen_netif_rx_response *resp;
	struct sk_buff_head rxq;
	struct sk_buff *skb;
	LIST_HEAD(notify);
	int ret;
	int nr_frags;
	int count;
	unsigned long offset;
	struct skb_cb_overlay *sco;
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	int need_to_notify = 0;
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	struct netrx_pending_operations npo = {
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		.copy  = vif->grant_copy_op,
		.meta  = vif->meta,
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	};

	skb_queue_head_init(&rxq);

	count = 0;

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	while ((skb = skb_dequeue(&vif->rx_queue)) != NULL) {
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		vif = netdev_priv(skb->dev);
		nr_frags = skb_shinfo(skb)->nr_frags;

		sco = (struct skb_cb_overlay *)skb->cb;
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		sco->meta_slots_used = xenvif_gop_skb(skb, &npo);
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		count += nr_frags + 1;

		__skb_queue_tail(&rxq, skb);

		/* Filled the batch queue? */
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		/* XXX FIXME: RX path dependent on MAX_SKB_FRAGS */
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		if (count + MAX_SKB_FRAGS >= XEN_NETIF_RX_RING_SIZE)
			break;
	}

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	BUG_ON(npo.meta_prod > ARRAY_SIZE(vif->meta));
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	if (!npo.copy_prod)
		return;

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	BUG_ON(npo.copy_prod > ARRAY_SIZE(vif->grant_copy_op));
	gnttab_batch_copy(vif->grant_copy_op, npo.copy_prod);
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	while ((skb = __skb_dequeue(&rxq)) != NULL) {
		sco = (struct skb_cb_overlay *)skb->cb;

		vif = netdev_priv(skb->dev);

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		if (vif->meta[npo.meta_cons].gso_size && vif->gso_prefix) {
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			resp = RING_GET_RESPONSE(&vif->rx,
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						 vif->rx.rsp_prod_pvt++);
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			resp->flags = XEN_NETRXF_gso_prefix | XEN_NETRXF_more_data;

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			resp->offset = vif->meta[npo.meta_cons].gso_size;
			resp->id = vif->meta[npo.meta_cons].id;
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			resp->status = sco->meta_slots_used;

			npo.meta_cons++;
			sco->meta_slots_used--;
		}


		vif->dev->stats.tx_bytes += skb->len;
		vif->dev->stats.tx_packets++;

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		status = xenvif_check_gop(vif, sco->meta_slots_used, &npo);
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614 615 616 617 618 619 620 621 622 623 624 625 626

		if (sco->meta_slots_used == 1)
			flags = 0;
		else
			flags = XEN_NETRXF_more_data;

		if (skb->ip_summed == CHECKSUM_PARTIAL) /* local packet? */
			flags |= XEN_NETRXF_csum_blank | XEN_NETRXF_data_validated;
		else if (skb->ip_summed == CHECKSUM_UNNECESSARY)
			/* remote but checksummed. */
			flags |= XEN_NETRXF_data_validated;

		offset = 0;
627
		resp = make_rx_response(vif, vif->meta[npo.meta_cons].id,
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					status, offset,
629
					vif->meta[npo.meta_cons].size,
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					flags);

632
		if (vif->meta[npo.meta_cons].gso_size && !vif->gso_prefix) {
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			struct xen_netif_extra_info *gso =
				(struct xen_netif_extra_info *)
				RING_GET_RESPONSE(&vif->rx,
						  vif->rx.rsp_prod_pvt++);

			resp->flags |= XEN_NETRXF_extra_info;

640
			gso->u.gso.size = vif->meta[npo.meta_cons].gso_size;
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			gso->u.gso.type = XEN_NETIF_GSO_TYPE_TCPV4;
			gso->u.gso.pad = 0;
			gso->u.gso.features = 0;

			gso->type = XEN_NETIF_EXTRA_TYPE_GSO;
			gso->flags = 0;
		}

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		xenvif_add_frag_responses(vif, status,
					  vif->meta + npo.meta_cons + 1,
					  sco->meta_slots_used);
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		RING_PUSH_RESPONSES_AND_CHECK_NOTIFY(&vif->rx, ret);

655 656 657
		if (ret)
			need_to_notify = 1;

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		xenvif_notify_tx_completion(vif);

		npo.meta_cons += sco->meta_slots_used;
		dev_kfree_skb(skb);
	}

664
	if (need_to_notify)
665
		notify_remote_via_irq(vif->rx_irq);
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	/* More work to do? */
668
	if (!skb_queue_empty(&vif->rx_queue))
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669
		xenvif_kick_thread(vif);
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}

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void xenvif_queue_tx_skb(struct xenvif *vif, struct sk_buff *skb)
I
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{
674
	skb_queue_tail(&vif->rx_queue, skb);
I
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675

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676
	xenvif_kick_thread(vif);
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}

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679
void xenvif_check_rx_xenvif(struct xenvif *vif)
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{
	int more_to_do;

	RING_FINAL_CHECK_FOR_REQUESTS(&vif->tx, more_to_do);

	if (more_to_do)
686
		napi_schedule(&vif->napi);
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}

static void tx_add_credit(struct xenvif *vif)
{
	unsigned long max_burst, max_credit;

	/*
	 * Allow a burst big enough to transmit a jumbo packet of up to 128kB.
	 * Otherwise the interface can seize up due to insufficient credit.
	 */
	max_burst = RING_GET_REQUEST(&vif->tx, vif->tx.req_cons)->size;
	max_burst = min(max_burst, 131072UL);
	max_burst = max(max_burst, vif->credit_bytes);

	/* Take care that adding a new chunk of credit doesn't wrap to zero. */
	max_credit = vif->remaining_credit + vif->credit_bytes;
	if (max_credit < vif->remaining_credit)
		max_credit = ULONG_MAX; /* wrapped: clamp to ULONG_MAX */

	vif->remaining_credit = min(max_credit, max_burst);
}

static void tx_credit_callback(unsigned long data)
{
	struct xenvif *vif = (struct xenvif *)data;
	tx_add_credit(vif);
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	xenvif_check_rx_xenvif(vif);
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}

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static void xenvif_tx_err(struct xenvif *vif,
			  struct xen_netif_tx_request *txp, RING_IDX end)
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{
	RING_IDX cons = vif->tx.req_cons;

	do {
		make_tx_response(vif, txp, XEN_NETIF_RSP_ERROR);
723
		if (cons == end)
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			break;
		txp = RING_GET_REQUEST(&vif->tx, cons++);
	} while (1);
	vif->tx.req_cons = cons;
}

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static void xenvif_fatal_tx_err(struct xenvif *vif)
731 732 733 734 735
{
	netdev_err(vif->dev, "fatal error; disabling device\n");
	xenvif_carrier_off(vif);
}

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static int xenvif_count_requests(struct xenvif *vif,
				 struct xen_netif_tx_request *first,
				 struct xen_netif_tx_request *txp,
				 int work_to_do)
I
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{
	RING_IDX cons = vif->tx.req_cons;
742 743
	int slots = 0;
	int drop_err = 0;
744
	int more_data;
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	if (!(first->flags & XEN_NETTXF_more_data))
		return 0;

	do {
750 751
		struct xen_netif_tx_request dropped_tx = { 0 };

752 753 754 755
		if (slots >= work_to_do) {
			netdev_err(vif->dev,
				   "Asked for %d slots but exceeds this limit\n",
				   work_to_do);
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756
			xenvif_fatal_tx_err(vif);
757
			return -ENODATA;
I
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		}

760 761 762
		/* This guest is really using too many slots and
		 * considered malicious.
		 */
763
		if (unlikely(slots >= fatal_skb_slots)) {
764 765
			netdev_err(vif->dev,
				   "Malicious frontend using %d slots, threshold %u\n",
766
				   slots, fatal_skb_slots);
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767
			xenvif_fatal_tx_err(vif);
768
			return -E2BIG;
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		}

771
		/* Xen network protocol had implicit dependency on
772 773 774 775 776
		 * MAX_SKB_FRAGS. XEN_NETBK_LEGACY_SLOTS_MAX is set to
		 * the historical MAX_SKB_FRAGS value 18 to honor the
		 * same behavior as before. Any packet using more than
		 * 18 slots but less than fatal_skb_slots slots is
		 * dropped
777
		 */
778
		if (!drop_err && slots >= XEN_NETBK_LEGACY_SLOTS_MAX) {
779 780 781
			if (net_ratelimit())
				netdev_dbg(vif->dev,
					   "Too many slots (%d) exceeding limit (%d), dropping packet\n",
782
					   slots, XEN_NETBK_LEGACY_SLOTS_MAX);
783 784 785
			drop_err = -E2BIG;
		}

786 787 788
		if (drop_err)
			txp = &dropped_tx;

789
		memcpy(txp, RING_GET_REQUEST(&vif->tx, cons + slots),
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		       sizeof(*txp));
791 792 793 794 795 796 797 798 799 800 801 802 803 804 805 806

		/* If the guest submitted a frame >= 64 KiB then
		 * first->size overflowed and following slots will
		 * appear to be larger than the frame.
		 *
		 * This cannot be fatal error as there are buggy
		 * frontends that do this.
		 *
		 * Consume all slots and drop the packet.
		 */
		if (!drop_err && txp->size > first->size) {
			if (net_ratelimit())
				netdev_dbg(vif->dev,
					   "Invalid tx request, slot size %u > remaining size %u\n",
					   txp->size, first->size);
			drop_err = -EIO;
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		}

		first->size -= txp->size;
810
		slots++;
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811 812

		if (unlikely((txp->offset + txp->size) > PAGE_SIZE)) {
813
			netdev_err(vif->dev, "Cross page boundary, txp->offset: %x, size: %u\n",
I
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				 txp->offset, txp->size);
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			xenvif_fatal_tx_err(vif);
816
			return -EINVAL;
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817
		}
818 819 820 821 822 823 824

		more_data = txp->flags & XEN_NETTXF_more_data;

		if (!drop_err)
			txp++;

	} while (more_data);
825 826

	if (drop_err) {
W
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		xenvif_tx_err(vif, first, cons + slots);
828 829 830 831
		return drop_err;
	}

	return slots;
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}

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static struct page *xenvif_alloc_page(struct xenvif *vif,
				      u16 pending_idx)
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{
	struct page *page;
838 839

	page = alloc_page(GFP_ATOMIC|__GFP_COLD);
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	if (!page)
		return NULL;
842 843
	vif->mmap_pages[pending_idx] = page;

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	return page;
}

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static struct gnttab_copy *xenvif_get_requests(struct xenvif *vif,
					       struct sk_buff *skb,
					       struct xen_netif_tx_request *txp,
					       struct gnttab_copy *gop)
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{
	struct skb_shared_info *shinfo = skb_shinfo(skb);
	skb_frag_t *frags = shinfo->frags;
854
	u16 pending_idx = *((u16 *)skb->data);
855 856 857 858 859 860 861 862 863
	u16 head_idx = 0;
	int slot, start;
	struct page *page;
	pending_ring_idx_t index, start_idx = 0;
	uint16_t dst_offset;
	unsigned int nr_slots;
	struct pending_tx_info *first = NULL;

	/* At this point shinfo->nr_frags is in fact the number of
864
	 * slots, which can be as large as XEN_NETBK_LEGACY_SLOTS_MAX.
865 866
	 */
	nr_slots = shinfo->nr_frags;
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867 868

	/* Skip first skb fragment if it is on same page as header fragment. */
869
	start = (frag_get_pending_idx(&shinfo->frags[0]) == pending_idx);
I
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870

871 872
	/* Coalesce tx requests, at this point the packet passed in
	 * should be <= 64K. Any packets larger than 64K have been
W
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873
	 * handled in xenvif_count_requests().
874 875 876
	 */
	for (shinfo->nr_frags = slot = start; slot < nr_slots;
	     shinfo->nr_frags++) {
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877
		struct pending_tx_info *pending_tx_info =
878
			vif->pending_tx_info;
I
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879

880
		page = alloc_page(GFP_ATOMIC|__GFP_COLD);
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		if (!page)
882
			goto err;
I
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883

884 885 886 887 888 889 890 891 892 893 894 895 896 897 898 899 900 901 902 903 904 905 906 907 908 909 910 911 912 913 914
		dst_offset = 0;
		first = NULL;
		while (dst_offset < PAGE_SIZE && slot < nr_slots) {
			gop->flags = GNTCOPY_source_gref;

			gop->source.u.ref = txp->gref;
			gop->source.domid = vif->domid;
			gop->source.offset = txp->offset;

			gop->dest.domid = DOMID_SELF;

			gop->dest.offset = dst_offset;
			gop->dest.u.gmfn = virt_to_mfn(page_address(page));

			if (dst_offset + txp->size > PAGE_SIZE) {
				/* This page can only merge a portion
				 * of tx request. Do not increment any
				 * pointer / counter here. The txp
				 * will be dealt with in future
				 * rounds, eventually hitting the
				 * `else` branch.
				 */
				gop->len = PAGE_SIZE - dst_offset;
				txp->offset += gop->len;
				txp->size -= gop->len;
				dst_offset += gop->len; /* quit loop */
			} else {
				/* This tx request can be merged in the page */
				gop->len = txp->size;
				dst_offset += gop->len;

915
				index = pending_index(vif->pending_cons++);
916

917
				pending_idx = vif->pending_ring[index];
918 919 920 921 922 923 924 925

				memcpy(&pending_tx_info[pending_idx].req, txp,
				       sizeof(*txp));

				/* Poison these fields, corresponding
				 * fields for head tx req will be set
				 * to correct values after the loop.
				 */
926
				vif->mmap_pages[pending_idx] = (void *)(~0UL);
927 928 929 930 931 932 933 934 935 936 937 938
				pending_tx_info[pending_idx].head =
					INVALID_PENDING_RING_IDX;

				if (!first) {
					first = &pending_tx_info[pending_idx];
					start_idx = index;
					head_idx = pending_idx;
				}

				txp++;
				slot++;
			}
I
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939

940 941
			gop++;
		}
I
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942

943 944 945
		first->req.offset = 0;
		first->req.size = dst_offset;
		first->head = start_idx;
946
		vif->mmap_pages[head_idx] = page;
947
		frag_set_pending_idx(&frags[shinfo->nr_frags], head_idx);
I
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948 949
	}

950 951
	BUG_ON(shinfo->nr_frags > MAX_SKB_FRAGS);

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952
	return gop;
953 954
err:
	/* Unwind, freeing all pages and sending error responses. */
955
	while (shinfo->nr_frags-- > start) {
W
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956
		xenvif_idx_release(vif,
957 958
				frag_get_pending_idx(&frags[shinfo->nr_frags]),
				XEN_NETIF_RSP_ERROR);
959 960 961
	}
	/* The head too, if necessary. */
	if (start)
W
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962
		xenvif_idx_release(vif, pending_idx, XEN_NETIF_RSP_ERROR);
963 964

	return NULL;
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}

W
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967 968 969
static int xenvif_tx_check_gop(struct xenvif *vif,
			       struct sk_buff *skb,
			       struct gnttab_copy **gopp)
I
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970 971
{
	struct gnttab_copy *gop = *gopp;
972
	u16 pending_idx = *((u16 *)skb->data);
I
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973
	struct skb_shared_info *shinfo = skb_shinfo(skb);
974
	struct pending_tx_info *tx_info;
I
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975 976
	int nr_frags = shinfo->nr_frags;
	int i, err, start;
977
	u16 peek; /* peek into next tx request */
I
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978 979 980

	/* Check status of header. */
	err = gop->status;
981
	if (unlikely(err))
W
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982
		xenvif_idx_release(vif, pending_idx, XEN_NETIF_RSP_ERROR);
I
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983 984

	/* Skip first skb fragment if it is on same page as header fragment. */
985
	start = (frag_get_pending_idx(&shinfo->frags[0]) == pending_idx);
I
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986 987 988

	for (i = start; i < nr_frags; i++) {
		int j, newerr;
989
		pending_ring_idx_t head;
I
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990

991
		pending_idx = frag_get_pending_idx(&shinfo->frags[i]);
992
		tx_info = &vif->pending_tx_info[pending_idx];
993
		head = tx_info->head;
I
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994 995

		/* Check error status: if okay then remember grant handle. */
996 997 998 999
		do {
			newerr = (++gop)->status;
			if (newerr)
				break;
1000 1001
			peek = vif->pending_ring[pending_index(++head)];
		} while (!pending_tx_is_head(vif, peek));
1002

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1003 1004 1005
		if (likely(!newerr)) {
			/* Had a previous error? Invalidate this fragment. */
			if (unlikely(err))
W
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1006 1007
				xenvif_idx_release(vif, pending_idx,
						   XEN_NETIF_RSP_OKAY);
I
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1008 1009 1010 1011
			continue;
		}

		/* Error on this fragment: respond to client with an error. */
W
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1012
		xenvif_idx_release(vif, pending_idx, XEN_NETIF_RSP_ERROR);
I
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1013 1014 1015 1016 1017 1018 1019

		/* Not the first error? Preceding frags already invalidated. */
		if (err)
			continue;

		/* First error: invalidate header and preceding fragments. */
		pending_idx = *((u16 *)skb->data);
W
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1020
		xenvif_idx_release(vif, pending_idx, XEN_NETIF_RSP_OKAY);
I
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1021
		for (j = start; j < i; j++) {
1022
			pending_idx = frag_get_pending_idx(&shinfo->frags[j]);
W
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1023 1024
			xenvif_idx_release(vif, pending_idx,
					   XEN_NETIF_RSP_OKAY);
I
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1025 1026 1027 1028 1029 1030 1031 1032 1033 1034
		}

		/* Remember the error: invalidate all subsequent fragments. */
		err = newerr;
	}

	*gopp = gop + 1;
	return err;
}

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1035
static void xenvif_fill_frags(struct xenvif *vif, struct sk_buff *skb)
I
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1036 1037 1038 1039 1040 1041 1042 1043
{
	struct skb_shared_info *shinfo = skb_shinfo(skb);
	int nr_frags = shinfo->nr_frags;
	int i;

	for (i = 0; i < nr_frags; i++) {
		skb_frag_t *frag = shinfo->frags + i;
		struct xen_netif_tx_request *txp;
1044 1045
		struct page *page;
		u16 pending_idx;
I
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1046

1047
		pending_idx = frag_get_pending_idx(frag);
I
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1048

1049 1050
		txp = &vif->pending_tx_info[pending_idx].req;
		page = virt_to_page(idx_to_kaddr(vif, pending_idx));
1051
		__skb_fill_page_desc(skb, i, page, txp->offset, txp->size);
I
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1052 1053 1054 1055
		skb->len += txp->size;
		skb->data_len += txp->size;
		skb->truesize += txp->size;

W
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1056
		/* Take an extra reference to offset xenvif_idx_release */
1057
		get_page(vif->mmap_pages[pending_idx]);
W
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1058
		xenvif_idx_release(vif, pending_idx, XEN_NETIF_RSP_OKAY);
I
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1059 1060 1061
	}
}

W
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1062
static int xenvif_get_extras(struct xenvif *vif,
I
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1063 1064 1065 1066 1067 1068 1069 1070
				struct xen_netif_extra_info *extras,
				int work_to_do)
{
	struct xen_netif_extra_info extra;
	RING_IDX cons = vif->tx.req_cons;

	do {
		if (unlikely(work_to_do-- <= 0)) {
1071
			netdev_err(vif->dev, "Missing extra info\n");
W
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1072
			xenvif_fatal_tx_err(vif);
I
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1073 1074 1075 1076 1077 1078 1079 1080
			return -EBADR;
		}

		memcpy(&extra, RING_GET_REQUEST(&vif->tx, cons),
		       sizeof(extra));
		if (unlikely(!extra.type ||
			     extra.type >= XEN_NETIF_EXTRA_TYPE_MAX)) {
			vif->tx.req_cons = ++cons;
1081
			netdev_err(vif->dev,
I
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1082
				   "Invalid extra type: %d\n", extra.type);
W
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1083
			xenvif_fatal_tx_err(vif);
I
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1084 1085 1086 1087 1088 1089 1090 1091 1092 1093
			return -EINVAL;
		}

		memcpy(&extras[extra.type - 1], &extra, sizeof(extra));
		vif->tx.req_cons = ++cons;
	} while (extra.flags & XEN_NETIF_EXTRA_FLAG_MORE);

	return work_to_do;
}

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1094 1095 1096
static int xenvif_set_skb_gso(struct xenvif *vif,
			      struct sk_buff *skb,
			      struct xen_netif_extra_info *gso)
I
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1097 1098
{
	if (!gso->u.gso.size) {
1099
		netdev_err(vif->dev, "GSO size must not be zero.\n");
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1100
		xenvif_fatal_tx_err(vif);
I
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1101 1102 1103 1104 1105
		return -EINVAL;
	}

	/* Currently only TCPv4 S.O. is supported. */
	if (gso->u.gso.type != XEN_NETIF_GSO_TYPE_TCPV4) {
1106
		netdev_err(vif->dev, "Bad GSO type %d.\n", gso->u.gso.type);
W
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1107
		xenvif_fatal_tx_err(vif);
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1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118 1119 1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148
		return -EINVAL;
	}

	skb_shinfo(skb)->gso_size = gso->u.gso.size;
	skb_shinfo(skb)->gso_type = SKB_GSO_TCPV4;

	/* Header must be checked, and gso_segs computed. */
	skb_shinfo(skb)->gso_type |= SKB_GSO_DODGY;
	skb_shinfo(skb)->gso_segs = 0;

	return 0;
}

static int checksum_setup(struct xenvif *vif, struct sk_buff *skb)
{
	struct iphdr *iph;
	int err = -EPROTO;
	int recalculate_partial_csum = 0;

	/*
	 * A GSO SKB must be CHECKSUM_PARTIAL. However some buggy
	 * peers can fail to set NETRXF_csum_blank when sending a GSO
	 * frame. In this case force the SKB to CHECKSUM_PARTIAL and
	 * recalculate the partial checksum.
	 */
	if (skb->ip_summed != CHECKSUM_PARTIAL && skb_is_gso(skb)) {
		vif->rx_gso_checksum_fixup++;
		skb->ip_summed = CHECKSUM_PARTIAL;
		recalculate_partial_csum = 1;
	}

	/* A non-CHECKSUM_PARTIAL SKB does not require setup. */
	if (skb->ip_summed != CHECKSUM_PARTIAL)
		return 0;

	if (skb->protocol != htons(ETH_P_IP))
		goto out;

	iph = (void *)skb->data;
	switch (iph->protocol) {
	case IPPROTO_TCP:
1149 1150 1151
		if (!skb_partial_csum_set(skb, 4 * iph->ihl,
					  offsetof(struct tcphdr, check)))
			goto out;
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1152 1153

		if (recalculate_partial_csum) {
1154
			struct tcphdr *tcph = tcp_hdr(skb);
I
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1155 1156 1157 1158 1159 1160
			tcph->check = ~csum_tcpudp_magic(iph->saddr, iph->daddr,
							 skb->len - iph->ihl*4,
							 IPPROTO_TCP, 0);
		}
		break;
	case IPPROTO_UDP:
1161 1162 1163
		if (!skb_partial_csum_set(skb, 4 * iph->ihl,
					  offsetof(struct udphdr, check)))
			goto out;
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1164 1165

		if (recalculate_partial_csum) {
1166
			struct udphdr *udph = udp_hdr(skb);
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			udph->check = ~csum_tcpudp_magic(iph->saddr, iph->daddr,
							 skb->len - iph->ihl*4,
							 IPPROTO_UDP, 0);
		}
		break;
	default:
		if (net_ratelimit())
			netdev_err(vif->dev,
				   "Attempting to checksum a non-TCP/UDP packet, dropping a protocol %d packet\n",
				   iph->protocol);
		goto out;
	}

	err = 0;

out:
	return err;
}

static bool tx_credit_exceeded(struct xenvif *vif, unsigned size)
{
	unsigned long now = jiffies;
	unsigned long next_credit =
		vif->credit_timeout.expires +
		msecs_to_jiffies(vif->credit_usec / 1000);

	/* Timer could already be pending in rare cases. */
	if (timer_pending(&vif->credit_timeout))
		return true;

	/* Passed the point where we can replenish credit? */
	if (time_after_eq(now, next_credit)) {
		vif->credit_timeout.expires = now;
		tx_add_credit(vif);
	}

	/* Still too big to send right now? Set a callback. */
	if (size > vif->remaining_credit) {
		vif->credit_timeout.data     =
			(unsigned long)vif;
		vif->credit_timeout.function =
			tx_credit_callback;
		mod_timer(&vif->credit_timeout,
			  next_credit);

		return true;
	}

	return false;
}

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1218
static unsigned xenvif_tx_build_gops(struct xenvif *vif)
I
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1219
{
1220
	struct gnttab_copy *gop = vif->tx_copy_ops, *request_gop;
I
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1221 1222 1223
	struct sk_buff *skb;
	int ret;

1224 1225
	while ((nr_pending_reqs(vif) + XEN_NETBK_LEGACY_SLOTS_MAX
		< MAX_PENDING_REQS)) {
I
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1226
		struct xen_netif_tx_request txreq;
1227
		struct xen_netif_tx_request txfrags[XEN_NETBK_LEGACY_SLOTS_MAX];
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1228 1229 1230 1231 1232 1233 1234 1235
		struct page *page;
		struct xen_netif_extra_info extras[XEN_NETIF_EXTRA_TYPE_MAX-1];
		u16 pending_idx;
		RING_IDX idx;
		int work_to_do;
		unsigned int data_len;
		pending_ring_idx_t index;

1236 1237 1238 1239 1240 1241 1242
		if (vif->tx.sring->req_prod - vif->tx.req_cons >
		    XEN_NETIF_TX_RING_SIZE) {
			netdev_err(vif->dev,
				   "Impossible number of requests. "
				   "req_prod %d, req_cons %d, size %ld\n",
				   vif->tx.sring->req_prod, vif->tx.req_cons,
				   XEN_NETIF_TX_RING_SIZE);
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1243
			xenvif_fatal_tx_err(vif);
1244 1245 1246
			continue;
		}

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1247
		RING_FINAL_CHECK_FOR_REQUESTS(&vif->tx, work_to_do);
1248 1249
		if (!work_to_do)
			break;
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1250 1251 1252 1253 1254 1255 1256

		idx = vif->tx.req_cons;
		rmb(); /* Ensure that we see the request before we copy it. */
		memcpy(&txreq, RING_GET_REQUEST(&vif->tx, idx), sizeof(txreq));

		/* Credit-based scheduling. */
		if (txreq.size > vif->remaining_credit &&
1257 1258
		    tx_credit_exceeded(vif, txreq.size))
			break;
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1259 1260 1261 1262 1263 1264 1265 1266

		vif->remaining_credit -= txreq.size;

		work_to_do--;
		vif->tx.req_cons = ++idx;

		memset(extras, 0, sizeof(extras));
		if (txreq.flags & XEN_NETTXF_extra_info) {
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1267 1268
			work_to_do = xenvif_get_extras(vif, extras,
						       work_to_do);
I
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1269
			idx = vif->tx.req_cons;
1270
			if (unlikely(work_to_do < 0))
1271
				break;
I
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1272 1273
		}

W
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1274
		ret = xenvif_count_requests(vif, &txreq, txfrags, work_to_do);
1275
		if (unlikely(ret < 0))
1276
			break;
1277

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1278 1279 1280 1281 1282
		idx += ret;

		if (unlikely(txreq.size < ETH_HLEN)) {
			netdev_dbg(vif->dev,
				   "Bad packet size: %d\n", txreq.size);
W
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1283
			xenvif_tx_err(vif, &txreq, idx);
1284
			break;
I
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1285 1286 1287 1288
		}

		/* No crossing a page as the payload mustn't fragment. */
		if (unlikely((txreq.offset + txreq.size) > PAGE_SIZE)) {
1289
			netdev_err(vif->dev,
I
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1290 1291 1292
				   "txreq.offset: %x, size: %u, end: %lu\n",
				   txreq.offset, txreq.size,
				   (txreq.offset&~PAGE_MASK) + txreq.size);
W
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1293
			xenvif_fatal_tx_err(vif);
1294
			break;
I
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1295 1296
		}

1297 1298
		index = pending_index(vif->pending_cons);
		pending_idx = vif->pending_ring[index];
I
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1299 1300

		data_len = (txreq.size > PKT_PROT_LEN &&
1301
			    ret < XEN_NETBK_LEGACY_SLOTS_MAX) ?
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1302 1303 1304 1305 1306 1307 1308
			PKT_PROT_LEN : txreq.size;

		skb = alloc_skb(data_len + NET_SKB_PAD + NET_IP_ALIGN,
				GFP_ATOMIC | __GFP_NOWARN);
		if (unlikely(skb == NULL)) {
			netdev_dbg(vif->dev,
				   "Can't allocate a skb in start_xmit.\n");
W
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1309
			xenvif_tx_err(vif, &txreq, idx);
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1310 1311 1312 1313 1314 1315 1316 1317 1318 1319
			break;
		}

		/* Packets passed to netif_rx() must have some headroom. */
		skb_reserve(skb, NET_SKB_PAD + NET_IP_ALIGN);

		if (extras[XEN_NETIF_EXTRA_TYPE_GSO - 1].type) {
			struct xen_netif_extra_info *gso;
			gso = &extras[XEN_NETIF_EXTRA_TYPE_GSO - 1];

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			if (xenvif_set_skb_gso(vif, skb, gso)) {
				/* Failure in xenvif_set_skb_gso is fatal. */
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1322
				kfree_skb(skb);
1323
				break;
I
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1324 1325 1326 1327
			}
		}

		/* XXX could copy straight to head */
W
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1328
		page = xenvif_alloc_page(vif, pending_idx);
I
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1329 1330
		if (!page) {
			kfree_skb(skb);
W
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1331
			xenvif_tx_err(vif, &txreq, idx);
1332
			break;
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1333 1334 1335 1336 1337 1338 1339 1340 1341 1342 1343 1344 1345 1346 1347
		}

		gop->source.u.ref = txreq.gref;
		gop->source.domid = vif->domid;
		gop->source.offset = txreq.offset;

		gop->dest.u.gmfn = virt_to_mfn(page_address(page));
		gop->dest.domid = DOMID_SELF;
		gop->dest.offset = txreq.offset;

		gop->len = txreq.size;
		gop->flags = GNTCOPY_source_gref;

		gop++;

1348
		memcpy(&vif->pending_tx_info[pending_idx].req,
I
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1349
		       &txreq, sizeof(txreq));
1350
		vif->pending_tx_info[pending_idx].head = index;
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		*((u16 *)skb->data) = pending_idx;

		__skb_put(skb, data_len);

		skb_shinfo(skb)->nr_frags = ret;
		if (data_len < txreq.size) {
			skb_shinfo(skb)->nr_frags++;
1358 1359
			frag_set_pending_idx(&skb_shinfo(skb)->frags[0],
					     pending_idx);
I
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1360
		} else {
1361 1362
			frag_set_pending_idx(&skb_shinfo(skb)->frags[0],
					     INVALID_PENDING_IDX);
I
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1363 1364
		}

1365
		vif->pending_cons++;
I
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1366

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1367
		request_gop = xenvif_get_requests(vif, skb, txfrags, gop);
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1368 1369
		if (request_gop == NULL) {
			kfree_skb(skb);
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1370
			xenvif_tx_err(vif, &txreq, idx);
1371
			break;
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1372 1373 1374
		}
		gop = request_gop;

1375
		__skb_queue_tail(&vif->tx_queue, skb);
1376

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		vif->tx.req_cons = idx;

1379
		if ((gop-vif->tx_copy_ops) >= ARRAY_SIZE(vif->tx_copy_ops))
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1380 1381 1382
			break;
	}

1383
	return gop - vif->tx_copy_ops;
I
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1384 1385
}

1386

W
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1387
static int xenvif_tx_submit(struct xenvif *vif, int budget)
I
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1388
{
1389
	struct gnttab_copy *gop = vif->tx_copy_ops;
I
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1390
	struct sk_buff *skb;
1391
	int work_done = 0;
I
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1392

1393 1394
	while (work_done < budget &&
	       (skb = __skb_dequeue(&vif->tx_queue)) != NULL) {
I
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1395 1396 1397 1398 1399
		struct xen_netif_tx_request *txp;
		u16 pending_idx;
		unsigned data_len;

		pending_idx = *((u16 *)skb->data);
1400
		txp = &vif->pending_tx_info[pending_idx].req;
I
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1401 1402

		/* Check the remap error code. */
W
Wei Liu 已提交
1403
		if (unlikely(xenvif_tx_check_gop(vif, skb, &gop))) {
I
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1404 1405 1406 1407 1408 1409 1410 1411
			netdev_dbg(vif->dev, "netback grant failed.\n");
			skb_shinfo(skb)->nr_frags = 0;
			kfree_skb(skb);
			continue;
		}

		data_len = skb->len;
		memcpy(skb->data,
1412
		       (void *)(idx_to_kaddr(vif, pending_idx)|txp->offset),
I
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1413 1414 1415 1416 1417 1418 1419
		       data_len);
		if (data_len < txp->size) {
			/* Append the packet payload as a fragment. */
			txp->offset += data_len;
			txp->size -= data_len;
		} else {
			/* Schedule a response immediately. */
W
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1420 1421
			xenvif_idx_release(vif, pending_idx,
					   XEN_NETIF_RSP_OKAY);
I
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1422 1423 1424 1425 1426 1427 1428
		}

		if (txp->flags & XEN_NETTXF_csum_blank)
			skb->ip_summed = CHECKSUM_PARTIAL;
		else if (txp->flags & XEN_NETTXF_data_validated)
			skb->ip_summed = CHECKSUM_UNNECESSARY;

W
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1429
		xenvif_fill_frags(vif, skb);
I
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1430 1431 1432 1433 1434 1435 1436 1437 1438 1439 1440 1441 1442

		/*
		 * If the initial fragment was < PKT_PROT_LEN then
		 * pull through some bytes from the other fragments to
		 * increase the linear region to PKT_PROT_LEN bytes.
		 */
		if (skb_headlen(skb) < PKT_PROT_LEN && skb_is_nonlinear(skb)) {
			int target = min_t(int, skb->len, PKT_PROT_LEN);
			__pskb_pull_tail(skb, target - skb_headlen(skb));
		}

		skb->dev      = vif->dev;
		skb->protocol = eth_type_trans(skb, skb->dev);
1443
		skb_reset_network_header(skb);
I
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1444 1445 1446 1447 1448 1449 1450 1451

		if (checksum_setup(vif, skb)) {
			netdev_dbg(vif->dev,
				   "Can't setup checksum in net_tx_action\n");
			kfree_skb(skb);
			continue;
		}

1452
		skb_probe_transport_header(skb, 0);
1453

I
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1454 1455 1456
		vif->dev->stats.rx_bytes += skb->len;
		vif->dev->stats.rx_packets++;

1457 1458 1459
		work_done++;

		netif_receive_skb(skb);
I
Ian Campbell 已提交
1460
	}
1461 1462

	return work_done;
I
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1463 1464 1465
}

/* Called after netfront has transmitted */
W
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1466
int xenvif_tx_action(struct xenvif *vif, int budget)
I
Ian Campbell 已提交
1467 1468
{
	unsigned nr_gops;
1469
	int work_done;
I
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1470

1471 1472 1473
	if (unlikely(!tx_work_todo(vif)))
		return 0;

W
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1474
	nr_gops = xenvif_tx_build_gops(vif);
I
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1475 1476

	if (nr_gops == 0)
1477 1478 1479
		return 0;

	gnttab_batch_copy(vif->tx_copy_ops, nr_gops);
I
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1480

W
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1481
	work_done = xenvif_tx_submit(vif, nr_gops);
I
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1482

1483
	return work_done;
I
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1484 1485
}

W
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1486 1487
static void xenvif_idx_release(struct xenvif *vif, u16 pending_idx,
			       u8 status)
I
Ian Campbell 已提交
1488 1489
{
	struct pending_tx_info *pending_tx_info;
1490 1491 1492
	pending_ring_idx_t head;
	u16 peek; /* peek into next tx request */

1493
	BUG_ON(vif->mmap_pages[pending_idx] == (void *)(~0UL));
I
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1494 1495

	/* Already complete? */
1496
	if (vif->mmap_pages[pending_idx] == NULL)
I
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1497 1498
		return;

1499
	pending_tx_info = &vif->pending_tx_info[pending_idx];
I
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1500

1501
	head = pending_tx_info->head;
I
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1502

1503 1504
	BUG_ON(!pending_tx_is_head(vif, head));
	BUG_ON(vif->pending_ring[pending_index(head)] != pending_idx);
I
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1505

1506 1507 1508
	do {
		pending_ring_idx_t index;
		pending_ring_idx_t idx = pending_index(head);
1509
		u16 info_idx = vif->pending_ring[idx];
I
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1510

1511
		pending_tx_info = &vif->pending_tx_info[info_idx];
1512 1513 1514 1515 1516 1517 1518 1519
		make_tx_response(vif, &pending_tx_info->req, status);

		/* Setting any number other than
		 * INVALID_PENDING_RING_IDX indicates this slot is
		 * starting a new packet / ending a previous packet.
		 */
		pending_tx_info->head = 0;

1520 1521
		index = pending_index(vif->pending_prod++);
		vif->pending_ring[index] = vif->pending_ring[info_idx];
I
Ian Campbell 已提交
1522

1523
		peek = vif->pending_ring[pending_index(++head)];
1524

1525
	} while (!pending_tx_is_head(vif, peek));
1526

1527 1528
	put_page(vif->mmap_pages[pending_idx]);
	vif->mmap_pages[pending_idx] = NULL;
I
Ian Campbell 已提交
1529 1530
}

1531

I
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1532 1533 1534 1535 1536 1537 1538 1539 1540 1541 1542 1543 1544 1545 1546 1547 1548 1549
static void make_tx_response(struct xenvif *vif,
			     struct xen_netif_tx_request *txp,
			     s8       st)
{
	RING_IDX i = vif->tx.rsp_prod_pvt;
	struct xen_netif_tx_response *resp;
	int notify;

	resp = RING_GET_RESPONSE(&vif->tx, i);
	resp->id     = txp->id;
	resp->status = st;

	if (txp->flags & XEN_NETTXF_extra_info)
		RING_GET_RESPONSE(&vif->tx, ++i)->status = XEN_NETIF_RSP_NULL;

	vif->tx.rsp_prod_pvt = ++i;
	RING_PUSH_RESPONSES_AND_CHECK_NOTIFY(&vif->tx, notify);
	if (notify)
1550
		notify_remote_via_irq(vif->tx_irq);
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1551 1552 1553 1554 1555 1556 1557 1558 1559 1560 1561 1562 1563 1564 1565 1566 1567 1568 1569 1570 1571 1572 1573 1574 1575
}

static struct xen_netif_rx_response *make_rx_response(struct xenvif *vif,
					     u16      id,
					     s8       st,
					     u16      offset,
					     u16      size,
					     u16      flags)
{
	RING_IDX i = vif->rx.rsp_prod_pvt;
	struct xen_netif_rx_response *resp;

	resp = RING_GET_RESPONSE(&vif->rx, i);
	resp->offset     = offset;
	resp->flags      = flags;
	resp->id         = id;
	resp->status     = (s16)size;
	if (st < 0)
		resp->status = (s16)st;

	vif->rx.rsp_prod_pvt = ++i;

	return resp;
}

1576
static inline int rx_work_todo(struct xenvif *vif)
I
Ian Campbell 已提交
1577
{
1578
	return !skb_queue_empty(&vif->rx_queue);
I
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1579 1580
}

1581
static inline int tx_work_todo(struct xenvif *vif)
I
Ian Campbell 已提交
1582 1583
{

1584 1585 1586
	if (likely(RING_HAS_UNCONSUMED_REQUESTS(&vif->tx)) &&
	    (nr_pending_reqs(vif) + XEN_NETBK_LEGACY_SLOTS_MAX
	     < MAX_PENDING_REQS))
I
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1587 1588 1589 1590 1591
		return 1;

	return 0;
}

W
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1592
void xenvif_unmap_frontend_rings(struct xenvif *vif)
I
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1593
{
1594 1595 1596 1597 1598 1599
	if (vif->tx.sring)
		xenbus_unmap_ring_vfree(xenvif_to_xenbus_device(vif),
					vif->tx.sring);
	if (vif->rx.sring)
		xenbus_unmap_ring_vfree(xenvif_to_xenbus_device(vif),
					vif->rx.sring);
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}

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int xenvif_map_frontend_rings(struct xenvif *vif,
			      grant_ref_t tx_ring_ref,
			      grant_ref_t rx_ring_ref)
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{
1606
	void *addr;
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	struct xen_netif_tx_sring *txs;
	struct xen_netif_rx_sring *rxs;

	int err = -ENOMEM;

1612 1613 1614
	err = xenbus_map_ring_valloc(xenvif_to_xenbus_device(vif),
				     tx_ring_ref, &addr);
	if (err)
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		goto err;

1617
	txs = (struct xen_netif_tx_sring *)addr;
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	BACK_RING_INIT(&vif->tx, txs, PAGE_SIZE);

1620 1621 1622
	err = xenbus_map_ring_valloc(xenvif_to_xenbus_device(vif),
				     rx_ring_ref, &addr);
	if (err)
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		goto err;

1625
	rxs = (struct xen_netif_rx_sring *)addr;
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	BACK_RING_INIT(&vif->rx, rxs, PAGE_SIZE);

1628 1629
	vif->rx_req_cons_peek = 0;

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	return 0;

err:
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	xenvif_unmap_frontend_rings(vif);
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	return err;
}

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int xenvif_kthread(void *data)
1638 1639 1640 1641 1642 1643 1644 1645 1646 1647 1648
{
	struct xenvif *vif = data;

	while (!kthread_should_stop()) {
		wait_event_interruptible(vif->wq,
					 rx_work_todo(vif) ||
					 kthread_should_stop());
		if (kthread_should_stop())
			break;

		if (rx_work_todo(vif))
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			xenvif_rx_action(vif);
1650 1651 1652 1653 1654 1655 1656

		cond_resched();
	}

	return 0;
}

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static int __init netback_init(void)
{
	int rc = 0;

1661
	if (!xen_domain())
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		return -ENODEV;

1664
	if (fatal_skb_slots < XEN_NETBK_LEGACY_SLOTS_MAX) {
1665 1666
		pr_info("fatal_skb_slots too small (%d), bump it to XEN_NETBK_LEGACY_SLOTS_MAX (%d)\n",
			fatal_skb_slots, XEN_NETBK_LEGACY_SLOTS_MAX);
1667
		fatal_skb_slots = XEN_NETBK_LEGACY_SLOTS_MAX;
1668 1669
	}

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	rc = xenvif_xenbus_init();
	if (rc)
		goto failed_init;

	return 0;

failed_init:
	return rc;
}

module_init(netback_init);

1682 1683 1684 1685 1686 1687
static void __exit netback_fini(void)
{
	xenvif_xenbus_fini();
}
module_exit(netback_fini);

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MODULE_LICENSE("Dual BSD/GPL");
1689
MODULE_ALIAS("xen-backend:vif");