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-rw-r--r--include/linux/skbuff.h2995
1 files changed, 2249 insertions, 746 deletions
diff --git a/include/linux/skbuff.h b/include/linux/skbuff.h
index dbe29b6c9bd6..86737076101d 100644
--- a/include/linux/skbuff.h
+++ b/include/linux/skbuff.h
@@ -1,138 +1,151 @@
+/* SPDX-License-Identifier: GPL-2.0-or-later */
/*
* Definitions for the 'struct sk_buff' memory handlers.
*
* Authors:
* Alan Cox, <gw4pts@gw4pts.ampr.org>
* Florian La Roche, <rzsfl@rz.uni-sb.de>
- *
- * This program is free software; you can redistribute it and/or
- * modify it under the terms of the GNU General Public License
- * as published by the Free Software Foundation; either version
- * 2 of the License, or (at your option) any later version.
*/
#ifndef _LINUX_SKBUFF_H
#define _LINUX_SKBUFF_H
#include <linux/kernel.h>
-#include <linux/kmemcheck.h>
#include <linux/compiler.h>
#include <linux/time.h>
#include <linux/bug.h>
+#include <linux/bvec.h>
#include <linux/cache.h>
#include <linux/rbtree.h>
#include <linux/socket.h>
+#include <linux/refcount.h>
#include <linux/atomic.h>
#include <asm/types.h>
#include <linux/spinlock.h>
-#include <linux/net.h>
-#include <linux/textsearch.h>
#include <net/checksum.h>
#include <linux/rcupdate.h>
-#include <linux/hrtimer.h>
#include <linux/dma-mapping.h>
#include <linux/netdev_features.h>
-#include <linux/sched.h>
-#include <linux/sched/clock.h>
#include <net/flow_dissector.h>
-#include <linux/splice.h>
#include <linux/in6.h>
#include <linux/if_packet.h>
+#include <linux/llist.h>
+#include <linux/page_frag_cache.h>
#include <net/flow.h>
+#if IS_ENABLED(CONFIG_NF_CONNTRACK)
+#include <linux/netfilter/nf_conntrack_common.h>
+#endif
+#include <net/net_debug.h>
+#include <net/dropreason-core.h>
+#include <net/netmem.h>
-/* The interface for checksum offload between the stack and networking drivers
+/**
+ * DOC: skb checksums
+ *
+ * The interface for checksum offload between the stack and networking drivers
* is as follows...
*
- * A. IP checksum related features
+ * IP checksum related features
+ * ~~~~~~~~~~~~~~~~~~~~~~~~~~~~
*
* Drivers advertise checksum offload capabilities in the features of a device.
- * From the stack's point of view these are capabilities offered by the driver,
- * a driver typically only advertises features that it is capable of offloading
+ * From the stack's point of view these are capabilities offered by the driver.
+ * A driver typically only advertises features that it is capable of offloading
* to its device.
*
- * The checksum related features are:
- *
- * NETIF_F_HW_CSUM - The driver (or its device) is able to compute one
- * IP (one's complement) checksum for any combination
- * of protocols or protocol layering. The checksum is
- * computed and set in a packet per the CHECKSUM_PARTIAL
- * interface (see below).
- *
- * NETIF_F_IP_CSUM - Driver (device) is only able to checksum plain
- * TCP or UDP packets over IPv4. These are specifically
- * unencapsulated packets of the form IPv4|TCP or
- * IPv4|UDP where the Protocol field in the IPv4 header
- * is TCP or UDP. The IPv4 header may contain IP options
- * This feature cannot be set in features for a device
- * with NETIF_F_HW_CSUM also set. This feature is being
- * DEPRECATED (see below).
- *
- * NETIF_F_IPV6_CSUM - Driver (device) is only able to checksum plain
- * TCP or UDP packets over IPv6. These are specifically
- * unencapsulated packets of the form IPv6|TCP or
- * IPv4|UDP where the Next Header field in the IPv6
- * header is either TCP or UDP. IPv6 extension headers
- * are not supported with this feature. This feature
- * cannot be set in features for a device with
- * NETIF_F_HW_CSUM also set. This feature is being
- * DEPRECATED (see below).
- *
- * NETIF_F_RXCSUM - Driver (device) performs receive checksum offload.
- * This flag is used only used to disable the RX checksum
- * feature for a device. The stack will accept receive
- * checksum indication in packets received on a device
- * regardless of whether NETIF_F_RXCSUM is set.
- *
- * B. Checksumming of received packets by device. Indication of checksum
- * verification is in set skb->ip_summed. Possible values are:
- *
- * CHECKSUM_NONE:
+ * .. flat-table:: Checksum related device features
+ * :widths: 1 10
+ *
+ * * - %NETIF_F_HW_CSUM
+ * - The driver (or its device) is able to compute one
+ * IP (one's complement) checksum for any combination
+ * of protocols or protocol layering. The checksum is
+ * computed and set in a packet per the CHECKSUM_PARTIAL
+ * interface (see below).
+ *
+ * * - %NETIF_F_IP_CSUM
+ * - Driver (device) is only able to checksum plain
+ * TCP or UDP packets over IPv4. These are specifically
+ * unencapsulated packets of the form IPv4|TCP or
+ * IPv4|UDP where the Protocol field in the IPv4 header
+ * is TCP or UDP. The IPv4 header may contain IP options.
+ * This feature cannot be set in features for a device
+ * with NETIF_F_HW_CSUM also set. This feature is being
+ * DEPRECATED (see below).
+ *
+ * * - %NETIF_F_IPV6_CSUM
+ * - Driver (device) is only able to checksum plain
+ * TCP or UDP packets over IPv6. These are specifically
+ * unencapsulated packets of the form IPv6|TCP or
+ * IPv6|UDP where the Next Header field in the IPv6
+ * header is either TCP or UDP. IPv6 extension headers
+ * are not supported with this feature. This feature
+ * cannot be set in features for a device with
+ * NETIF_F_HW_CSUM also set. This feature is being
+ * DEPRECATED (see below).
+ *
+ * * - %NETIF_F_RXCSUM
+ * - Driver (device) performs receive checksum offload.
+ * This flag is only used to disable the RX checksum
+ * feature for a device. The stack will accept receive
+ * checksum indication in packets received on a device
+ * regardless of whether NETIF_F_RXCSUM is set.
+ *
+ * Checksumming of received packets by device
+ * ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
+ *
+ * Indication of checksum verification is set in &sk_buff.ip_summed.
+ * Possible values are:
+ *
+ * - %CHECKSUM_NONE
*
* Device did not checksum this packet e.g. due to lack of capabilities.
* The packet contains full (though not verified) checksum in packet but
* not in skb->csum. Thus, skb->csum is undefined in this case.
*
- * CHECKSUM_UNNECESSARY:
+ * - %CHECKSUM_UNNECESSARY
*
* The hardware you're dealing with doesn't calculate the full checksum
- * (as in CHECKSUM_COMPLETE), but it does parse headers and verify checksums
- * for specific protocols. For such packets it will set CHECKSUM_UNNECESSARY
- * if their checksums are okay. skb->csum is still undefined in this case
+ * (as in %CHECKSUM_COMPLETE), but it does parse headers and verify checksums
+ * for specific protocols. For such packets it will set %CHECKSUM_UNNECESSARY
+ * if their checksums are okay. &sk_buff.csum is still undefined in this case
* though. A driver or device must never modify the checksum field in the
* packet even if checksum is verified.
*
- * CHECKSUM_UNNECESSARY is applicable to following protocols:
- * TCP: IPv6 and IPv4.
- * UDP: IPv4 and IPv6. A device may apply CHECKSUM_UNNECESSARY to a
+ * %CHECKSUM_UNNECESSARY is applicable to following protocols:
+ *
+ * - TCP: IPv6 and IPv4.
+ * - UDP: IPv4 and IPv6. A device may apply CHECKSUM_UNNECESSARY to a
* zero UDP checksum for either IPv4 or IPv6, the networking stack
* may perform further validation in this case.
- * GRE: only if the checksum is present in the header.
- * SCTP: indicates the CRC in SCTP header has been validated.
- * FCOE: indicates the CRC in FC frame has been validated.
+ * - GRE: only if the checksum is present in the header.
+ * - SCTP: indicates the CRC in SCTP header has been validated.
+ * - FCOE: indicates the CRC in FC frame has been validated.
*
- * skb->csum_level indicates the number of consecutive checksums found in
- * the packet minus one that have been verified as CHECKSUM_UNNECESSARY.
+ * &sk_buff.csum_level indicates the number of consecutive checksums found in
+ * the packet minus one that have been verified as %CHECKSUM_UNNECESSARY.
* For instance if a device receives an IPv6->UDP->GRE->IPv4->TCP packet
* and a device is able to verify the checksums for UDP (possibly zero),
- * GRE (checksum flag is set), and TCP-- skb->csum_level would be set to
+ * GRE (checksum flag is set) and TCP, &sk_buff.csum_level would be set to
* two. If the device were only able to verify the UDP checksum and not
- * GRE, either because it doesn't support GRE checksum of because GRE
+ * GRE, either because it doesn't support GRE checksum or because GRE
* checksum is bad, skb->csum_level would be set to zero (TCP checksum is
* not considered in this case).
*
- * CHECKSUM_COMPLETE:
+ * - %CHECKSUM_COMPLETE
*
* This is the most generic way. The device supplied checksum of the _whole_
- * packet as seen by netif_rx() and fills out in skb->csum. Meaning, the
+ * packet as seen by netif_rx() and fills in &sk_buff.csum. This means the
* hardware doesn't need to parse L3/L4 headers to implement this.
*
* Notes:
+ *
* - Even if device supports only some protocols, but is able to produce
* skb->csum, it MUST use CHECKSUM_COMPLETE, not CHECKSUM_UNNECESSARY.
* - CHECKSUM_COMPLETE is not applicable to SCTP and FCoE protocols.
*
- * CHECKSUM_PARTIAL:
+ * - %CHECKSUM_PARTIAL
*
* A checksum is set up to be offloaded to a device as described in the
* output description for CHECKSUM_PARTIAL. This may occur on a packet
@@ -144,17 +157,21 @@
* packet that are after the checksum being offloaded are not considered to
* be verified.
*
- * C. Checksumming on transmit for non-GSO. The stack requests checksum offload
- * in the skb->ip_summed for a packet. Values are:
+ * Checksumming on transmit for non-GSO
+ * ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
+ *
+ * The stack requests checksum offload in the &sk_buff.ip_summed for a packet.
+ * Values are:
*
- * CHECKSUM_PARTIAL:
+ * - %CHECKSUM_PARTIAL
*
* The driver is required to checksum the packet as seen by hard_start_xmit()
- * from skb->csum_start up to the end, and to record/write the checksum at
- * offset skb->csum_start + skb->csum_offset. A driver may verify that the
+ * from &sk_buff.csum_start up to the end, and to record/write the checksum at
+ * offset &sk_buff.csum_start + &sk_buff.csum_offset.
+ * A driver may verify that the
* csum_start and csum_offset values are valid values given the length and
- * offset of the packet, however they should not attempt to validate that the
- * checksum refers to a legitimate transport layer checksum-- it is the
+ * offset of the packet, but it should not attempt to validate that the
+ * checksum refers to a legitimate transport layer checksum -- it is the
* purview of the stack to validate that csum_start and csum_offset are set
* correctly.
*
@@ -163,57 +180,68 @@
* checksum calculation to the device, or call skb_checksum_help (in the case
* that the device does not support offload for a particular checksum).
*
- * NETIF_F_IP_CSUM and NETIF_F_IPV6_CSUM are being deprecated in favor of
- * NETIF_F_HW_CSUM. New devices should use NETIF_F_HW_CSUM to indicate
+ * %NETIF_F_IP_CSUM and %NETIF_F_IPV6_CSUM are being deprecated in favor of
+ * %NETIF_F_HW_CSUM. New devices should use %NETIF_F_HW_CSUM to indicate
* checksum offload capability.
- * skb_csum_hwoffload_help() can be called to resolve CHECKSUM_PARTIAL based
+ * skb_csum_hwoffload_help() can be called to resolve %CHECKSUM_PARTIAL based
* on network device checksumming capabilities: if a packet does not match
- * them, skb_checksum_help or skb_crc32c_help (depending on the value of
- * csum_not_inet, see item D.) is called to resolve the checksum.
+ * them, skb_checksum_help() or skb_crc32c_help() (depending on the value of
+ * &sk_buff.csum_not_inet, see :ref:`crc`)
+ * is called to resolve the checksum.
*
- * CHECKSUM_NONE:
+ * - %CHECKSUM_NONE
*
* The skb was already checksummed by the protocol, or a checksum is not
* required.
*
- * CHECKSUM_UNNECESSARY:
+ * - %CHECKSUM_UNNECESSARY
*
- * This has the same meaning on as CHECKSUM_NONE for checksum offload on
+ * This has the same meaning as CHECKSUM_NONE for checksum offload on
* output.
*
- * CHECKSUM_COMPLETE:
+ * - %CHECKSUM_COMPLETE
+ *
* Not used in checksum output. If a driver observes a packet with this value
- * set in skbuff, if should treat as CHECKSUM_NONE being set.
- *
- * D. Non-IP checksum (CRC) offloads
- *
- * NETIF_F_SCTP_CRC - This feature indicates that a device is capable of
- * offloading the SCTP CRC in a packet. To perform this offload the stack
- * will set set csum_start and csum_offset accordingly, set ip_summed to
- * CHECKSUM_PARTIAL and set csum_not_inet to 1, to provide an indication in
- * the skbuff that the CHECKSUM_PARTIAL refers to CRC32c.
- * A driver that supports both IP checksum offload and SCTP CRC32c offload
- * must verify which offload is configured for a packet by testing the
- * value of skb->csum_not_inet; skb_crc32c_csum_help is provided to resolve
- * CHECKSUM_PARTIAL on skbs where csum_not_inet is set to 1.
- *
- * NETIF_F_FCOE_CRC - This feature indicates that a device is capable of
- * offloading the FCOE CRC in a packet. To perform this offload the stack
- * will set ip_summed to CHECKSUM_PARTIAL and set csum_start and csum_offset
- * accordingly. Note the there is no indication in the skbuff that the
- * CHECKSUM_PARTIAL refers to an FCOE checksum, a driver that supports
- * both IP checksum offload and FCOE CRC offload must verify which offload
- * is configured for a packet presumably by inspecting packet headers.
- *
- * E. Checksumming on output with GSO.
- *
- * In the case of a GSO packet (skb_is_gso(skb) is true), checksum offload
+ * set in skbuff, it should treat the packet as if %CHECKSUM_NONE were set.
+ *
+ * .. _crc:
+ *
+ * Non-IP checksum (CRC) offloads
+ * ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
+ *
+ * .. flat-table::
+ * :widths: 1 10
+ *
+ * * - %NETIF_F_SCTP_CRC
+ * - This feature indicates that a device is capable of
+ * offloading the SCTP CRC in a packet. To perform this offload the stack
+ * will set csum_start and csum_offset accordingly, set ip_summed to
+ * %CHECKSUM_PARTIAL and set csum_not_inet to 1, to provide an indication
+ * in the skbuff that the %CHECKSUM_PARTIAL refers to CRC32c.
+ * A driver that supports both IP checksum offload and SCTP CRC32c offload
+ * must verify which offload is configured for a packet by testing the
+ * value of &sk_buff.csum_not_inet; skb_crc32c_csum_help() is provided to
+ * resolve %CHECKSUM_PARTIAL on skbs where csum_not_inet is set to 1.
+ *
+ * * - %NETIF_F_FCOE_CRC
+ * - This feature indicates that a device is capable of offloading the FCOE
+ * CRC in a packet. To perform this offload the stack will set ip_summed
+ * to %CHECKSUM_PARTIAL and set csum_start and csum_offset
+ * accordingly. Note that there is no indication in the skbuff that the
+ * %CHECKSUM_PARTIAL refers to an FCOE checksum, so a driver that supports
+ * both IP checksum offload and FCOE CRC offload must verify which offload
+ * is configured for a packet, presumably by inspecting packet headers.
+ *
+ * Checksumming on output with GSO
+ * ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
+ *
+ * In the case of a GSO packet (skb_is_gso() is true), checksum offload
* is implied by the SKB_GSO_* flags in gso_type. Most obviously, if the
- * gso_type is SKB_GSO_TCPV4 or SKB_GSO_TCPV6, TCP checksum offload as
+ * gso_type is %SKB_GSO_TCPV4 or %SKB_GSO_TCPV6, TCP checksum offload as
* part of the GSO operation is implied. If a checksum is being offloaded
- * with GSO then ip_summed is CHECKSUM_PARTIAL, csum_start and csum_offset
- * are set to refer to the outermost checksum being offload (two offloaded
- * checksums are possible with UDP encapsulation).
+ * with GSO then ip_summed is %CHECKSUM_PARTIAL, and both csum_start and
+ * csum_offset are set to refer to the outermost checksum being offloaded
+ * (two offloaded checksums are possible with UDP encapsulation).
*/
/* Don't change this without changing skb_csum_unnecessary! */
@@ -228,6 +256,14 @@
#define SKB_DATA_ALIGN(X) ALIGN(X, SMP_CACHE_BYTES)
#define SKB_WITH_OVERHEAD(X) \
((X) - SKB_DATA_ALIGN(sizeof(struct skb_shared_info)))
+
+/* For X bytes available in skb->head, what is the minimal
+ * allocation needed, knowing struct skb_shared_info needs
+ * to be aligned.
+ */
+#define SKB_HEAD_ALIGN(X) (SKB_DATA_ALIGN(X) + \
+ SKB_DATA_ALIGN(sizeof(struct skb_shared_info)))
+
#define SKB_MAX_ORDER(X, ORDER) \
SKB_WITH_OVERHEAD((PAGE_SIZE << (ORDER)) - (X))
#define SKB_MAX_HEAD(X) (SKB_MAX_ORDER((X), 0))
@@ -243,16 +279,13 @@ struct scatterlist;
struct pipe_inode_info;
struct iov_iter;
struct napi_struct;
-
-#if defined(CONFIG_NF_CONNTRACK) || defined(CONFIG_NF_CONNTRACK_MODULE)
-struct nf_conntrack {
- atomic_t use;
-};
-#endif
+struct bpf_prog;
+union bpf_attr;
+struct skb_ext;
+struct ts_config;
#if IS_ENABLED(CONFIG_BRIDGE_NETFILTER)
struct nf_bridge_info {
- refcount_t use;
enum {
BRNF_PROTO_UNCHANGED,
BRNF_PROTO_8021Q,
@@ -261,8 +294,9 @@ struct nf_bridge_info {
u8 pkt_otherhost:1;
u8 in_prerouting:1;
u8 bridged_dnat:1;
+ u8 sabotage_in_done:1;
__u16 frag_max_size;
- struct net_device *physindev;
+ int physinif;
/* always valid & non-NULL from FORWARD on, for physdev match */
struct net_device *physoutdev;
@@ -280,10 +314,32 @@ struct nf_bridge_info {
};
#endif
+#if IS_ENABLED(CONFIG_NET_TC_SKB_EXT)
+/* Chain in tc_skb_ext will be used to share the tc chain with
+ * ovs recirc_id. It will be set to the current chain by tc
+ * and read by ovs to recirc_id.
+ */
+struct tc_skb_ext {
+ union {
+ u64 act_miss_cookie;
+ __u32 chain;
+ };
+ __u16 mru;
+ __u16 zone;
+ u8 post_ct:1;
+ u8 post_ct_snat:1;
+ u8 post_ct_dnat:1;
+ u8 act_miss:1; /* Set if act_miss_cookie is used */
+ u8 l2_miss:1; /* Set by bridge upon FDB or MDB miss */
+};
+#endif
+
struct sk_buff_head {
- /* These two members must be first. */
- struct sk_buff *next;
- struct sk_buff *prev;
+ /* These two members must be first to match sk_buff. */
+ struct_group_tagged(sk_buff_list, list,
+ struct sk_buff *next;
+ struct sk_buff *prev;
+ );
__u32 qlen;
spinlock_t lock;
@@ -291,66 +347,108 @@ struct sk_buff_head {
struct sk_buff;
-/* To allow 64K frame to be packed as single skb without frag_list we
- * require 64K/PAGE_SIZE pages plus 1 additional page to allow for
- * buffers which do not start on a page boundary.
- *
- * Since GRO uses frags we allocate at least 16 regardless of page
- * size.
- */
-#if (65536/PAGE_SIZE + 1) < 16
-#define MAX_SKB_FRAGS 16UL
-#else
-#define MAX_SKB_FRAGS (65536/PAGE_SIZE + 1)
+#ifndef CONFIG_MAX_SKB_FRAGS
+# define CONFIG_MAX_SKB_FRAGS 17
#endif
-extern int sysctl_max_skb_frags;
+
+#define MAX_SKB_FRAGS CONFIG_MAX_SKB_FRAGS
/* Set skb_shinfo(skb)->gso_size to this in case you want skb_segment to
* segment using its current segmentation instead.
*/
#define GSO_BY_FRAGS 0xFFFF
-typedef struct skb_frag_struct skb_frag_t;
-
-struct skb_frag_struct {
- struct {
- struct page *p;
- } page;
-#if (BITS_PER_LONG > 32) || (PAGE_SIZE >= 65536)
- __u32 page_offset;
- __u32 size;
-#else
- __u16 page_offset;
- __u16 size;
-#endif
-};
+typedef struct skb_frag {
+ netmem_ref netmem;
+ unsigned int len;
+ unsigned int offset;
+} skb_frag_t;
+/**
+ * skb_frag_size() - Returns the size of a skb fragment
+ * @frag: skb fragment
+ */
static inline unsigned int skb_frag_size(const skb_frag_t *frag)
{
- return frag->size;
+ return frag->len;
}
+/**
+ * skb_frag_size_set() - Sets the size of a skb fragment
+ * @frag: skb fragment
+ * @size: size of fragment
+ */
static inline void skb_frag_size_set(skb_frag_t *frag, unsigned int size)
{
- frag->size = size;
+ frag->len = size;
}
+/**
+ * skb_frag_size_add() - Increments the size of a skb fragment by @delta
+ * @frag: skb fragment
+ * @delta: value to add
+ */
static inline void skb_frag_size_add(skb_frag_t *frag, int delta)
{
- frag->size += delta;
+ frag->len += delta;
}
+/**
+ * skb_frag_size_sub() - Decrements the size of a skb fragment by @delta
+ * @frag: skb fragment
+ * @delta: value to subtract
+ */
static inline void skb_frag_size_sub(skb_frag_t *frag, int delta)
{
- frag->size -= delta;
+ frag->len -= delta;
+}
+
+/**
+ * skb_frag_must_loop - Test if %p is a high memory page
+ * @p: fragment's page
+ */
+static inline bool skb_frag_must_loop(struct page *p)
+{
+#if defined(CONFIG_HIGHMEM)
+ if (IS_ENABLED(CONFIG_DEBUG_KMAP_LOCAL_FORCE_MAP) || PageHighMem(p))
+ return true;
+#endif
+ return false;
}
-#define HAVE_HW_TIME_STAMP
+/**
+ * skb_frag_foreach_page - loop over pages in a fragment
+ *
+ * @f: skb frag to operate on
+ * @f_off: offset from start of f->netmem
+ * @f_len: length from f_off to loop over
+ * @p: (temp var) current page
+ * @p_off: (temp var) offset from start of current page,
+ * non-zero only on first page.
+ * @p_len: (temp var) length in current page,
+ * < PAGE_SIZE only on first and last page.
+ * @copied: (temp var) length so far, excluding current p_len.
+ *
+ * A fragment can hold a compound page, in which case per-page
+ * operations, notably kmap_atomic, must be called for each
+ * regular page.
+ */
+#define skb_frag_foreach_page(f, f_off, f_len, p, p_off, p_len, copied) \
+ for (p = skb_frag_page(f) + ((f_off) >> PAGE_SHIFT), \
+ p_off = (f_off) & (PAGE_SIZE - 1), \
+ p_len = skb_frag_must_loop(p) ? \
+ min_t(u32, f_len, PAGE_SIZE - p_off) : f_len, \
+ copied = 0; \
+ copied < f_len; \
+ copied += p_len, p++, p_off = 0, \
+ p_len = min_t(u32, f_len - copied, PAGE_SIZE)) \
/**
* struct skb_shared_hwtstamps - hardware time stamps
- * @hwtstamp: hardware time stamp transformed into duration
- * since arbitrary point in time
+ * @hwtstamp: hardware time stamp transformed into duration
+ * since arbitrary point in time
+ * @netdev_data: address/cookie of network device driver used as
+ * reference to actual hardware time stamp
*
* Software time stamps generated by ktime_get_real() are stored in
* skb->tstamp.
@@ -362,13 +460,16 @@ static inline void skb_frag_size_sub(skb_frag_t *frag, int delta)
* &skb_shared_info. Use skb_hwtstamps() to get a pointer.
*/
struct skb_shared_hwtstamps {
- ktime_t hwtstamp;
+ union {
+ ktime_t hwtstamp;
+ void *netdev_data;
+ };
};
/* Definitions for tx_flags in struct skb_shared_info */
enum {
/* generate hardware time stamp */
- SKBTX_HW_TSTAMP = 1 << 0,
+ SKBTX_HW_TSTAMP_NOBPF = 1 << 0,
/* generate software time stamp when queueing packet to NIC */
SKBTX_SW_TSTAMP = 1 << 1,
@@ -376,26 +477,63 @@ enum {
/* device driver is going to provide hardware time stamp */
SKBTX_IN_PROGRESS = 1 << 2,
- /* device driver supports TX zero-copy buffers */
- SKBTX_DEV_ZEROCOPY = 1 << 3,
+ /* generate software time stamp on packet tx completion */
+ SKBTX_COMPLETION_TSTAMP = 1 << 3,
- /* generate wifi status information (where possible) */
- SKBTX_WIFI_STATUS = 1 << 4,
+ /* determine hardware time stamp based on time or cycles */
+ SKBTX_HW_TSTAMP_NETDEV = 1 << 5,
+
+ /* generate software time stamp when entering packet scheduling */
+ SKBTX_SCHED_TSTAMP = 1 << 6,
+
+ /* used for bpf extension when a bpf program is loaded */
+ SKBTX_BPF = 1 << 7,
+};
+
+#define SKBTX_HW_TSTAMP (SKBTX_HW_TSTAMP_NOBPF | SKBTX_BPF)
+
+#define SKBTX_ANY_SW_TSTAMP (SKBTX_SW_TSTAMP | \
+ SKBTX_SCHED_TSTAMP | \
+ SKBTX_BPF | \
+ SKBTX_COMPLETION_TSTAMP)
+#define SKBTX_ANY_TSTAMP (SKBTX_HW_TSTAMP | \
+ SKBTX_ANY_SW_TSTAMP)
+
+/* Definitions for flags in struct skb_shared_info */
+enum {
+ /* use zcopy routines */
+ SKBFL_ZEROCOPY_ENABLE = BIT(0),
/* This indicates at least one fragment might be overwritten
* (as in vmsplice(), sendfile() ...)
* If we need to compute a TX checksum, we'll need to copy
* all frags to avoid possible bad checksum
*/
- SKBTX_SHARED_FRAG = 1 << 5,
+ SKBFL_SHARED_FRAG = BIT(1),
- /* generate software time stamp when entering packet scheduling */
- SKBTX_SCHED_TSTAMP = 1 << 6,
+ /* segment contains only zerocopy data and should not be
+ * charged to the kernel memory.
+ */
+ SKBFL_PURE_ZEROCOPY = BIT(2),
+
+ SKBFL_DONT_ORPHAN = BIT(3),
+
+ /* page references are managed by the ubuf_info, so it's safe to
+ * use frags only up until ubuf_info is released
+ */
+ SKBFL_MANAGED_FRAG_REFS = BIT(4),
};
-#define SKBTX_ANY_SW_TSTAMP (SKBTX_SW_TSTAMP | \
- SKBTX_SCHED_TSTAMP)
-#define SKBTX_ANY_TSTAMP (SKBTX_HW_TSTAMP | SKBTX_ANY_SW_TSTAMP)
+#define SKBFL_ZEROCOPY_FRAG (SKBFL_ZEROCOPY_ENABLE | SKBFL_SHARED_FRAG)
+#define SKBFL_ALL_ZEROCOPY (SKBFL_ZEROCOPY_FRAG | SKBFL_PURE_ZEROCOPY | \
+ SKBFL_DONT_ORPHAN | SKBFL_MANAGED_FRAG_REFS)
+
+struct ubuf_info_ops {
+ void (*complete)(struct sk_buff *, struct ubuf_info *,
+ bool zerocopy_success);
+ /* has to be compatible with skb_zcopy_set() */
+ int (*link_skb)(struct sk_buff *skb, struct ubuf_info *uarg);
+};
/*
* The callback notifies userspace to release buffers when skb DMA is done in
@@ -406,50 +544,116 @@ enum {
* The desc field is used to track userspace buffer index.
*/
struct ubuf_info {
- void (*callback)(struct ubuf_info *, bool zerocopy_success);
- void *ctx;
- unsigned long desc;
+ const struct ubuf_info_ops *ops;
+ refcount_t refcnt;
+ u8 flags;
+};
+
+struct ubuf_info_msgzc {
+ struct ubuf_info ubuf;
+
+ union {
+ struct {
+ unsigned long desc;
+ void *ctx;
+ };
+ struct {
+ u32 id;
+ u16 len;
+ u16 zerocopy:1;
+ u32 bytelen;
+ };
+ };
+
+ struct mmpin {
+ struct user_struct *user;
+ unsigned int num_pg;
+ } mmp;
+};
+
+#define skb_uarg(SKB) ((struct ubuf_info *)(skb_shinfo(SKB)->destructor_arg))
+#define uarg_to_msgzc(ubuf_ptr) container_of((ubuf_ptr), struct ubuf_info_msgzc, \
+ ubuf)
+
+int mm_account_pinned_pages(struct mmpin *mmp, size_t size);
+void mm_unaccount_pinned_pages(struct mmpin *mmp);
+
+/* Preserve some data across TX submission and completion.
+ *
+ * Note, this state is stored in the driver. Extending the layout
+ * might need some special care.
+ */
+struct xsk_tx_metadata_compl {
+ __u64 *tx_timestamp;
};
/* This data is invariant across clones and lives at
* the end of the header data, ie. at skb->end.
*/
struct skb_shared_info {
- unsigned short _unused;
- unsigned char nr_frags;
+ __u8 flags;
+ __u8 meta_len;
+ __u8 nr_frags;
__u8 tx_flags;
unsigned short gso_size;
/* Warning: this field is not always filled in (UFO)! */
unsigned short gso_segs;
struct sk_buff *frag_list;
- struct skb_shared_hwtstamps hwtstamps;
+ union {
+ struct skb_shared_hwtstamps hwtstamps;
+ struct xsk_tx_metadata_compl xsk_meta;
+ };
unsigned int gso_type;
u32 tskey;
- __be32 ip6_frag_id;
/*
* Warning : all fields before dataref are cleared in __alloc_skb()
*/
atomic_t dataref;
- /* Intermediate layers must ensure that destructor_arg
- * remains valid until skb destructor */
- void * destructor_arg;
+ union {
+ struct {
+ u32 xdp_frags_size;
+ u32 xdp_frags_truesize;
+ };
+
+ /*
+ * Intermediate layers must ensure that destructor_arg
+ * remains valid until skb destructor.
+ */
+ void *destructor_arg;
+ };
/* must be last field, see pskb_expand_head() */
skb_frag_t frags[MAX_SKB_FRAGS];
};
-/* We divide dataref into two halves. The higher 16 bits hold references
- * to the payload part of skb->data. The lower 16 bits hold references to
- * the entire skb->data. A clone of a headerless skb holds the length of
- * the header in skb->hdr_len.
- *
- * All users must obey the rule that the skb->data reference count must be
- * greater than or equal to the payload reference count.
- *
- * Holding a reference to the payload part means that the user does not
- * care about modifications to the header part of skb->data.
+/**
+ * DOC: dataref and headerless skbs
+ *
+ * Transport layers send out clones of payload skbs they hold for
+ * retransmissions. To allow lower layers of the stack to prepend their headers
+ * we split &skb_shared_info.dataref into two halves.
+ * The lower 16 bits count the overall number of references.
+ * The higher 16 bits indicate how many of the references are payload-only.
+ * skb_header_cloned() checks if skb is allowed to add / write the headers.
+ *
+ * The creator of the skb (e.g. TCP) marks its skb as &sk_buff.nohdr
+ * (via __skb_header_release()). Any clone created from marked skb will get
+ * &sk_buff.hdr_len populated with the available headroom.
+ * If there's the only clone in existence it's able to modify the headroom
+ * at will. The sequence of calls inside the transport layer is::
+ *
+ * <alloc skb>
+ * skb_reserve()
+ * __skb_header_release()
+ * skb_clone()
+ * // send the clone down the stack
+ *
+ * This is not a very generic construct and it depends on the transport layers
+ * doing the right thing. In practice there's usually only one payload-only skb.
+ * Having multiple payload-only skbs with different lengths of hdr_len is not
+ * possible. The payload-only skbs should never leave their owner.
*/
#define SKB_DATAREF_SHIFT 16
#define SKB_DATAREF_MASK ((1 << SKB_DATAREF_SHIFT) - 1)
@@ -463,39 +667,52 @@ enum {
enum {
SKB_GSO_TCPV4 = 1 << 0,
- SKB_GSO_UDP = 1 << 1,
/* This indicates the skb is from an untrusted source. */
- SKB_GSO_DODGY = 1 << 2,
+ SKB_GSO_DODGY = 1 << 1,
/* This indicates the tcp segment has CWR set. */
- SKB_GSO_TCP_ECN = 1 << 3,
+ SKB_GSO_TCP_ECN = 1 << 2,
+
+ __SKB_GSO_TCP_FIXEDID = 1 << 3,
+
+ SKB_GSO_TCPV6 = 1 << 4,
+
+ SKB_GSO_FCOE = 1 << 5,
- SKB_GSO_TCP_FIXEDID = 1 << 4,
+ SKB_GSO_GRE = 1 << 6,
- SKB_GSO_TCPV6 = 1 << 5,
+ SKB_GSO_GRE_CSUM = 1 << 7,
- SKB_GSO_FCOE = 1 << 6,
+ SKB_GSO_IPXIP4 = 1 << 8,
- SKB_GSO_GRE = 1 << 7,
+ SKB_GSO_IPXIP6 = 1 << 9,
- SKB_GSO_GRE_CSUM = 1 << 8,
+ SKB_GSO_UDP_TUNNEL = 1 << 10,
- SKB_GSO_IPXIP4 = 1 << 9,
+ SKB_GSO_UDP_TUNNEL_CSUM = 1 << 11,
- SKB_GSO_IPXIP6 = 1 << 10,
+ SKB_GSO_PARTIAL = 1 << 12,
- SKB_GSO_UDP_TUNNEL = 1 << 11,
+ SKB_GSO_TUNNEL_REMCSUM = 1 << 13,
- SKB_GSO_UDP_TUNNEL_CSUM = 1 << 12,
+ SKB_GSO_SCTP = 1 << 14,
- SKB_GSO_PARTIAL = 1 << 13,
+ SKB_GSO_ESP = 1 << 15,
- SKB_GSO_TUNNEL_REMCSUM = 1 << 14,
+ SKB_GSO_UDP = 1 << 16,
- SKB_GSO_SCTP = 1 << 15,
+ SKB_GSO_UDP_L4 = 1 << 17,
- SKB_GSO_ESP = 1 << 16,
+ SKB_GSO_FRAGLIST = 1 << 18,
+
+ SKB_GSO_TCP_ACCECN = 1 << 19,
+
+ /* These indirectly map onto the same netdev feature.
+ * If NETIF_F_TSO_MANGLEID is set it may mangle both inner and outer IDs.
+ */
+ SKB_GSO_TCP_FIXEDID = 1 << 30,
+ SKB_GSO_TCP_FIXEDID_INNER = 1 << 31,
};
#if BITS_PER_LONG > 32
@@ -508,17 +725,68 @@ typedef unsigned int sk_buff_data_t;
typedef unsigned char *sk_buff_data_t;
#endif
-/**
+enum skb_tstamp_type {
+ SKB_CLOCK_REALTIME,
+ SKB_CLOCK_MONOTONIC,
+ SKB_CLOCK_TAI,
+ __SKB_CLOCK_MAX = SKB_CLOCK_TAI,
+};
+
+/**
+ * DOC: Basic sk_buff geometry
+ *
+ * struct sk_buff itself is a metadata structure and does not hold any packet
+ * data. All the data is held in associated buffers.
+ *
+ * &sk_buff.head points to the main "head" buffer. The head buffer is divided
+ * into two parts:
+ *
+ * - data buffer, containing headers and sometimes payload;
+ * this is the part of the skb operated on by the common helpers
+ * such as skb_put() or skb_pull();
+ * - shared info (struct skb_shared_info) which holds an array of pointers
+ * to read-only data in the (page, offset, length) format.
+ *
+ * Optionally &skb_shared_info.frag_list may point to another skb.
+ *
+ * Basic diagram may look like this::
+ *
+ * ---------------
+ * | sk_buff |
+ * ---------------
+ * ,--------------------------- + head
+ * / ,----------------- + data
+ * / / ,----------- + tail
+ * | | | , + end
+ * | | | |
+ * v v v v
+ * -----------------------------------------------
+ * | headroom | data | tailroom | skb_shared_info |
+ * -----------------------------------------------
+ * + [page frag]
+ * + [page frag]
+ * + [page frag]
+ * + [page frag] ---------
+ * + frag_list --> | sk_buff |
+ * ---------
+ *
+ */
+
+/**
* struct sk_buff - socket buffer
* @next: Next buffer in list
* @prev: Previous buffer in list
* @tstamp: Time we arrived/left
+ * @skb_mstamp_ns: (aka @tstamp) earliest departure time; start point
+ * for retransmit timer
* @rbnode: RB tree node, alternative to next/prev for netem/tcp
+ * @list: queue head
+ * @ll_node: anchor in an llist (eg socket defer_list)
* @sk: Socket we are owned by
* @dev: Device we arrived on/are leaving by
+ * @dev_scratch: (aka @dev) alternate use of @dev when @dev would be %NULL
* @cb: Control buffer. Free for use by every layer. Put private vars here
* @_skb_refdst: destination entry (with norefcount bit)
- * @sp: the security path, used for xfrm
* @len: Length of actual data
* @data_len: Data length
* @mac_len: Length of link layer header
@@ -534,22 +802,34 @@ typedef unsigned char *sk_buff_data_t;
* @pkt_type: Packet class
* @fclone: skbuff clone status
* @ipvs_property: skbuff is owned by ipvs
+ * @inner_protocol_type: whether the inner protocol is
+ * ENCAP_TYPE_ETHER or ENCAP_TYPE_IPPROTO
+ * @remcsum_offload: remote checksum offload is enabled
+ * @offload_fwd_mark: Packet was L2-forwarded in hardware
+ * @offload_l3_fwd_mark: Packet was L3-forwarded in hardware
* @tc_skip_classify: do not classify packet. set by IFB device
* @tc_at_ingress: used within tc_classify to distinguish in/egress
- * @tc_redirected: packet was redirected by a tc action
- * @tc_from_ingress: if tc_redirected, tc_at_ingress at time of redirect
+ * @redirected: packet was redirected by packet classifier
+ * @from_ingress: packet was redirected from the ingress path
+ * @nf_skip_egress: packet shall skip nf egress - see netfilter_netdev.h
* @peeked: this packet has been seen already, so stats have been
* done for it, don't do them again
* @nf_trace: netfilter packet trace flag
* @protocol: Packet protocol from driver
* @destructor: Destruct function
+ * @tcp_tsorted_anchor: list structure for TCP (tp->tsorted_sent_queue)
+ * @_sk_redir: socket redirection information for skmsg
* @_nfct: Associated connection, if any (with nfctinfo bits)
- * @nf_bridge: Saved data about a bridged frame - see br_netfilter.c
* @skb_iif: ifindex of device we arrived on
* @tc_index: Traffic control index
* @hash: the packet hash
* @queue_mapping: Queue mapping for multiqueue devices
- * @xmit_more: More SKBs are pending for this queue
+ * @head_frag: skb was allocated from page fragments,
+ * not allocated by kmalloc() or vmalloc().
+ * @pfmemalloc: skbuff was allocated from PFMEMALLOC reserves
+ * @pp_recycle: mark the packet for recycling instead of freeing (implies
+ * page_pool support on driver)
+ * @active_extensions: active extensions (skb_ext_id types)
* @ndisc_nodetype: router type (from link layer)
* @ooo_okay: allow the mapping of a socket to a queue to be changed
* @l4_hash: indicate hash is a canonical 4-tuple hash over transport
@@ -558,51 +838,76 @@ typedef unsigned char *sk_buff_data_t;
* @wifi_acked_valid: wifi_acked was set
* @wifi_acked: whether frame was acked on wifi or not
* @no_fcs: Request NIC to treat last 4 bytes as Ethernet FCS
+ * @encapsulation: indicates the inner headers in the skbuff are valid
+ * @encap_hdr_csum: software checksum is needed
+ * @csum_valid: checksum is already valid
* @csum_not_inet: use CRC32c to resolve CHECKSUM_PARTIAL
+ * @csum_complete_sw: checksum was completed by software
+ * @csum_level: indicates the number of consecutive checksums found in
+ * the packet minus one that have been verified as
+ * CHECKSUM_UNNECESSARY (max 3)
+ * @unreadable: indicates that at least 1 of the fragments in this skb is
+ * unreadable.
* @dst_pending_confirm: need to confirm neighbour
- * @napi_id: id of the NAPI struct this skb came from
+ * @decrypted: Decrypted SKB
+ * @slow_gro: state present at GRO time, slower prepare step required
+ * @tstamp_type: When set, skb->tstamp has the
+ * delivery_time clock base of skb->tstamp.
+ * @napi_id: id of the NAPI struct this skb came from
+ * @sender_cpu: (aka @napi_id) source CPU in XPS
+ * @alloc_cpu: CPU which did the skb allocation.
* @secmark: security marking
* @mark: Generic packet mark
+ * @reserved_tailroom: (aka @mark) number of bytes of free space available
+ * at the tail of an sk_buff
+ * @vlan_all: vlan fields (proto & tci)
* @vlan_proto: vlan encapsulation protocol
* @vlan_tci: vlan tag control information
* @inner_protocol: Protocol (encapsulation)
+ * @inner_ipproto: (aka @inner_protocol) stores ipproto when
+ * skb->inner_protocol_type == ENCAP_TYPE_IPPROTO;
* @inner_transport_header: Inner transport layer header (encapsulation)
* @inner_network_header: Network layer header (encapsulation)
* @inner_mac_header: Link layer header (encapsulation)
* @transport_header: Transport layer header
* @network_header: Network layer header
* @mac_header: Link layer header
+ * @kcov_handle: KCOV remote handle for remote coverage collection
* @tail: Tail pointer
* @end: End pointer
* @head: Head of buffer
* @data: Data head pointer
* @truesize: Buffer size
* @users: User count - see {datagram,tcp}.c
+ * @extensions: allocated extensions, valid if active_extensions is nonzero
*/
struct sk_buff {
union {
struct {
- /* These two members must be first. */
+ /* These two members must be first to match sk_buff_head. */
struct sk_buff *next;
struct sk_buff *prev;
union {
- ktime_t tstamp;
- u64 skb_mstamp;
+ struct net_device *dev;
+ /* Some protocols might use this space to store information,
+ * while device pointer would be NULL.
+ * UDP receive path is one user.
+ */
+ unsigned long dev_scratch;
};
};
- struct rb_node rbnode; /* used in netem & tcp stack */
+ struct rb_node rbnode; /* used in netem, ip4 defrag, and tcp stack */
+ struct list_head list;
+ struct llist_node ll_node;
};
+
struct sock *sk;
union {
- struct net_device *dev;
- /* Some protocols might use this space to store information,
- * while device pointer would be NULL.
- * UDP receive path is one user.
- */
- unsigned long dev_scratch;
+ ktime_t tstamp;
+ u64 skb_mstamp_ns; /* earliest departure time */
};
/*
* This is the control buffer. It is free to use for every
@@ -612,17 +917,20 @@ struct sk_buff {
*/
char cb[48] __aligned(8);
- unsigned long _skb_refdst;
- void (*destructor)(struct sk_buff *skb);
-#ifdef CONFIG_XFRM
- struct sec_path *sp;
+ union {
+ struct {
+ unsigned long _skb_refdst;
+ void (*destructor)(struct sk_buff *skb);
+ };
+ struct list_head tcp_tsorted_anchor;
+#ifdef CONFIG_NET_SOCK_MSG
+ unsigned long _sk_redir;
#endif
+ };
+
#if defined(CONFIG_NF_CONNTRACK) || defined(CONFIG_NF_CONNTRACK_MODULE)
unsigned long _nfct;
#endif
-#if IS_ENABLED(CONFIG_BRIDGE_NETFILTER)
- struct nf_bridge_info *nf_bridge;
-#endif
unsigned int len,
data_len;
__u16 mac_len,
@@ -631,7 +939,6 @@ struct sk_buff {
/* Following fields are _not_ copied in __copy_skb_header()
* Note that queue_mapping is here mostly to fill a hole.
*/
- kmemcheck_bitfield_begin(flags1);
__u16 queue_mapping;
/* if you move cloned around you also must adapt those constants */
@@ -640,76 +947,95 @@ struct sk_buff {
#else
#define CLONED_MASK 1
#endif
-#define CLONED_OFFSET() offsetof(struct sk_buff, __cloned_offset)
+#define CLONED_OFFSET offsetof(struct sk_buff, __cloned_offset)
+ /* private: */
__u8 __cloned_offset[0];
+ /* public: */
__u8 cloned:1,
nohdr:1,
fclone:2,
peeked:1,
head_frag:1,
- xmit_more:1,
- __unused:1; /* one bit hole */
- kmemcheck_bitfield_end(flags1);
+ pfmemalloc:1,
+ pp_recycle:1; /* page_pool recycle indicator */
+#ifdef CONFIG_SKB_EXTENSIONS
+ __u8 active_extensions;
+#endif
- /* fields enclosed in headers_start/headers_end are copied
+ /* Fields enclosed in headers group are copied
* using a single memcpy() in __copy_skb_header()
*/
- /* private: */
- __u32 headers_start[0];
- /* public: */
-
-/* if you move pkt_type around you also must adapt those constants */
-#ifdef __BIG_ENDIAN_BITFIELD
-#define PKT_TYPE_MAX (7 << 5)
-#else
-#define PKT_TYPE_MAX 7
-#endif
-#define PKT_TYPE_OFFSET() offsetof(struct sk_buff, __pkt_type_offset)
+ struct_group(headers,
+ /* private: */
__u8 __pkt_type_offset[0];
- __u8 pkt_type:3;
- __u8 pfmemalloc:1;
+ /* public: */
+ __u8 pkt_type:3; /* see PKT_TYPE_MAX */
__u8 ignore_df:1;
-
- __u8 nf_trace:1;
+ __u8 dst_pending_confirm:1;
__u8 ip_summed:2;
__u8 ooo_okay:1;
+
+ /* private: */
+ __u8 __mono_tc_offset[0];
+ /* public: */
+ __u8 tstamp_type:2; /* See skb_tstamp_type */
+#ifdef CONFIG_NET_XGRESS
+ __u8 tc_at_ingress:1; /* See TC_AT_INGRESS_MASK */
+ __u8 tc_skip_classify:1;
+#endif
+ __u8 remcsum_offload:1;
+ __u8 csum_complete_sw:1;
+ __u8 csum_level:2;
+ __u8 inner_protocol_type:1;
+
__u8 l4_hash:1;
__u8 sw_hash:1;
+#ifdef CONFIG_WIRELESS
__u8 wifi_acked_valid:1;
__u8 wifi_acked:1;
-
+#endif
__u8 no_fcs:1;
/* Indicates the inner headers are valid in the skbuff. */
__u8 encapsulation:1;
__u8 encap_hdr_csum:1;
__u8 csum_valid:1;
- __u8 csum_complete_sw:1;
- __u8 csum_level:2;
- __u8 csum_not_inet:1;
-
- __u8 dst_pending_confirm:1;
#ifdef CONFIG_IPV6_NDISC_NODETYPE
__u8 ndisc_nodetype:2;
#endif
+
+#if IS_ENABLED(CONFIG_IP_VS)
__u8 ipvs_property:1;
- __u8 inner_protocol_type:1;
- __u8 remcsum_offload:1;
+#endif
+#if IS_ENABLED(CONFIG_NETFILTER_XT_TARGET_TRACE) || IS_ENABLED(CONFIG_NF_TABLES)
+ __u8 nf_trace:1;
+#endif
#ifdef CONFIG_NET_SWITCHDEV
__u8 offload_fwd_mark:1;
+ __u8 offload_l3_fwd_mark:1;
#endif
-#ifdef CONFIG_NET_CLS_ACT
- __u8 tc_skip_classify:1;
- __u8 tc_at_ingress:1;
- __u8 tc_redirected:1;
- __u8 tc_from_ingress:1;
+ __u8 redirected:1;
+#ifdef CONFIG_NET_REDIRECT
+ __u8 from_ingress:1;
#endif
-
-#ifdef CONFIG_NET_SCHED
+#ifdef CONFIG_NETFILTER_SKIP_EGRESS
+ __u8 nf_skip_egress:1;
+#endif
+#ifdef CONFIG_SKB_DECRYPTED
+ __u8 decrypted:1;
+#endif
+ __u8 slow_gro:1;
+#if IS_ENABLED(CONFIG_IP_SCTP)
+ __u8 csum_not_inet:1;
+#endif
+ __u8 unreadable:1;
+#if defined(CONFIG_NET_SCHED) || defined(CONFIG_NET_XGRESS)
__u16 tc_index; /* traffic control index */
#endif
+ u16 alloc_cpu;
+
union {
__wsum csum;
struct {
@@ -720,8 +1046,13 @@ struct sk_buff {
__u32 priority;
int skb_iif;
__u32 hash;
- __be16 vlan_proto;
- __u16 vlan_tci;
+ union {
+ u32 vlan_all;
+ struct {
+ __be16 vlan_proto;
+ __u16 vlan_tci;
+ };
+ };
#if defined(CONFIG_NET_RX_BUSY_POLL) || defined(CONFIG_XPS)
union {
unsigned int napi_id;
@@ -751,9 +1082,11 @@ struct sk_buff {
__u16 network_header;
__u16 mac_header;
- /* private: */
- __u32 headers_end[0];
- /* public: */
+#ifdef CONFIG_KCOV
+ u64 kcov_handle;
+#endif
+
+ ); /* end headers group */
/* These elements must be at the end, see alloc_skb() for details. */
sk_buff_data_t tail;
@@ -762,20 +1095,47 @@ struct sk_buff {
*data;
unsigned int truesize;
refcount_t users;
+
+#ifdef CONFIG_SKB_EXTENSIONS
+ /* only usable after checking ->active_extensions != 0 */
+ struct skb_ext *extensions;
+#endif
};
+/* if you move pkt_type around you also must adapt those constants */
+#ifdef __BIG_ENDIAN_BITFIELD
+#define PKT_TYPE_MAX (7 << 5)
+#else
+#define PKT_TYPE_MAX 7
+#endif
+#define PKT_TYPE_OFFSET offsetof(struct sk_buff, __pkt_type_offset)
+
+/* if you move tc_at_ingress or tstamp_type
+ * around, you also must adapt these constants.
+ */
+#ifdef __BIG_ENDIAN_BITFIELD
+#define SKB_TSTAMP_TYPE_MASK (3 << 6)
+#define SKB_TSTAMP_TYPE_RSHIFT (6)
+#define TC_AT_INGRESS_MASK (1 << 5)
+#else
+#define SKB_TSTAMP_TYPE_MASK (3)
+#define TC_AT_INGRESS_MASK (1 << 2)
+#endif
+#define SKB_BF_MONO_TC_OFFSET offsetof(struct sk_buff, __mono_tc_offset)
+
#ifdef __KERNEL__
/*
* Handling routines are only of interest to the kernel
*/
-#include <linux/slab.h>
-
#define SKB_ALLOC_FCLONE 0x01
#define SKB_ALLOC_RX 0x02
#define SKB_ALLOC_NAPI 0x04
-/* Returns true if the skb was allocated from PFMEMALLOC reserves */
+/**
+ * skb_pfmemalloc - Test if the skb was allocated from PFMEMALLOC reserves
+ * @skb: buffer
+ */
static inline bool skb_pfmemalloc(const struct sk_buff *skb)
{
return unlikely(skb->pfmemalloc);
@@ -788,16 +1148,15 @@ static inline bool skb_pfmemalloc(const struct sk_buff *skb)
#define SKB_DST_NOREF 1UL
#define SKB_DST_PTRMASK ~(SKB_DST_NOREF)
-#define SKB_NFCT_PTRMASK ~(7UL)
/**
* skb_dst - returns skb dst_entry
* @skb: buffer
*
- * Returns skb dst_entry, regardless of reference taken or not.
+ * Returns: skb dst_entry, regardless of reference taken or not.
*/
static inline struct dst_entry *skb_dst(const struct sk_buff *skb)
{
- /* If refdst was not refcounted, check we still are in a
+ /* If refdst was not refcounted, check we still are in a
* rcu_read_lock section
*/
WARN_ON((skb->_skb_refdst & SKB_DST_NOREF) &&
@@ -806,6 +1165,45 @@ static inline struct dst_entry *skb_dst(const struct sk_buff *skb)
return (struct dst_entry *)(skb->_skb_refdst & SKB_DST_PTRMASK);
}
+static inline void skb_dst_check_unset(struct sk_buff *skb)
+{
+ DEBUG_NET_WARN_ON_ONCE((skb->_skb_refdst & SKB_DST_PTRMASK) &&
+ !(skb->_skb_refdst & SKB_DST_NOREF));
+}
+
+/**
+ * skb_dstref_steal() - return current dst_entry value and clear it
+ * @skb: buffer
+ *
+ * Resets skb dst_entry without adjusting its reference count. Useful in
+ * cases where dst_entry needs to be temporarily reset and restored.
+ * Note that the returned value cannot be used directly because it
+ * might contain SKB_DST_NOREF bit.
+ *
+ * When in doubt, prefer skb_dst_drop() over skb_dstref_steal() to correctly
+ * handle dst_entry reference counting.
+ *
+ * Returns: original skb dst_entry.
+ */
+static inline unsigned long skb_dstref_steal(struct sk_buff *skb)
+{
+ unsigned long refdst = skb->_skb_refdst;
+
+ skb->_skb_refdst = 0;
+ return refdst;
+}
+
+/**
+ * skb_dstref_restore() - restore skb dst_entry removed via skb_dstref_steal()
+ * @skb: buffer
+ * @refdst: dst entry from a call to skb_dstref_steal()
+ */
+static inline void skb_dstref_restore(struct sk_buff *skb, unsigned long refdst)
+{
+ skb_dst_check_unset(skb);
+ skb->_skb_refdst = refdst;
+}
+
/**
* skb_dst_set - sets skb dst
* @skb: buffer
@@ -816,6 +1214,8 @@ static inline struct dst_entry *skb_dst(const struct sk_buff *skb)
*/
static inline void skb_dst_set(struct sk_buff *skb, struct dst_entry *dst)
{
+ skb_dst_check_unset(skb);
+ skb->slow_gro |= !!dst;
skb->_skb_refdst = (unsigned long)dst;
}
@@ -831,7 +1231,9 @@ static inline void skb_dst_set(struct sk_buff *skb, struct dst_entry *dst)
*/
static inline void skb_dst_set_noref(struct sk_buff *skb, struct dst_entry *dst)
{
+ skb_dst_check_unset(skb);
WARN_ON(!rcu_read_lock_held() && !rcu_read_lock_bh_held());
+ skb->slow_gro |= !!dst;
skb->_skb_refdst = (unsigned long)dst | SKB_DST_NOREF;
}
@@ -844,11 +1246,6 @@ static inline bool skb_dst_is_noref(const struct sk_buff *skb)
return (skb->_skb_refdst & SKB_DST_NOREF) && skb_dst(skb);
}
-static inline struct rtable *skb_rtable(const struct sk_buff *skb)
-{
- return (struct rtable *)skb_dst(skb);
-}
-
/* For mangling skb->pkt_type from user space side from applications
* such as nft, tc, etc, we only allow a conservative subset of
* possible pkt_types to be set.
@@ -858,6 +1255,10 @@ static inline bool skb_pkt_type_ok(u32 ptype)
return ptype <= PACKET_OTHERHOST;
}
+/**
+ * skb_napi_id - Returns the skb's NAPI id
+ * @skb: buffer
+ */
static inline unsigned int skb_napi_id(const struct sk_buff *skb)
{
#ifdef CONFIG_NET_RX_BUSY_POLL
@@ -867,12 +1268,26 @@ static inline unsigned int skb_napi_id(const struct sk_buff *skb)
#endif
}
-/* decrement the reference count and return true if we can free the skb */
+static inline bool skb_wifi_acked_valid(const struct sk_buff *skb)
+{
+#ifdef CONFIG_WIRELESS
+ return skb->wifi_acked_valid;
+#else
+ return 0;
+#endif
+}
+
+/**
+ * skb_unref - decrement the skb's reference count
+ * @skb: buffer
+ *
+ * Returns: true if we can free the skb.
+ */
static inline bool skb_unref(struct sk_buff *skb)
{
if (unlikely(!skb))
return false;
- if (likely(refcount_read(&skb->users) == 1))
+ if (!IS_ENABLED(CONFIG_DEBUG_NET) && likely(refcount_read(&skb->users) == 1))
smp_rmb();
else if (likely(!refcount_dec_and_test(&skb->users)))
return false;
@@ -880,14 +1295,64 @@ static inline bool skb_unref(struct sk_buff *skb)
return true;
}
+static inline bool skb_data_unref(const struct sk_buff *skb,
+ struct skb_shared_info *shinfo)
+{
+ int bias;
+
+ if (!skb->cloned)
+ return true;
+
+ bias = skb->nohdr ? (1 << SKB_DATAREF_SHIFT) + 1 : 1;
+
+ if (atomic_read(&shinfo->dataref) == bias)
+ smp_rmb();
+ else if (atomic_sub_return(bias, &shinfo->dataref))
+ return false;
+
+ return true;
+}
+
+void __fix_address sk_skb_reason_drop(struct sock *sk, struct sk_buff *skb,
+ enum skb_drop_reason reason);
+
+static inline void
+kfree_skb_reason(struct sk_buff *skb, enum skb_drop_reason reason)
+{
+ sk_skb_reason_drop(NULL, skb, reason);
+}
+
+/**
+ * kfree_skb - free an sk_buff with 'NOT_SPECIFIED' reason
+ * @skb: buffer to free
+ */
+static inline void kfree_skb(struct sk_buff *skb)
+{
+ kfree_skb_reason(skb, SKB_DROP_REASON_NOT_SPECIFIED);
+}
+
void skb_release_head_state(struct sk_buff *skb);
-void kfree_skb(struct sk_buff *skb);
-void kfree_skb_list(struct sk_buff *segs);
+void kfree_skb_list_reason(struct sk_buff *segs,
+ enum skb_drop_reason reason);
+void skb_dump(const char *level, const struct sk_buff *skb, bool full_pkt);
void skb_tx_error(struct sk_buff *skb);
+
+static inline void kfree_skb_list(struct sk_buff *segs)
+{
+ kfree_skb_list_reason(segs, SKB_DROP_REASON_NOT_SPECIFIED);
+}
+
+#ifdef CONFIG_TRACEPOINTS
void consume_skb(struct sk_buff *skb);
-void consume_stateless_skb(struct sk_buff *skb);
+#else
+static inline void consume_skb(struct sk_buff *skb)
+{
+ return kfree_skb(skb);
+}
+#endif
+
+void __consume_stateless_skb(struct sk_buff *skb);
void __kfree_skb(struct sk_buff *skb);
-extern struct kmem_cache *skbuff_head_cache;
void kfree_skb_partial(struct sk_buff *skb, bool head_stolen);
bool skb_try_coalesce(struct sk_buff *to, struct sk_buff *from,
@@ -897,6 +1362,21 @@ struct sk_buff *__alloc_skb(unsigned int size, gfp_t priority, int flags,
int node);
struct sk_buff *__build_skb(void *data, unsigned int frag_size);
struct sk_buff *build_skb(void *data, unsigned int frag_size);
+struct sk_buff *build_skb_around(struct sk_buff *skb,
+ void *data, unsigned int frag_size);
+void skb_attempt_defer_free(struct sk_buff *skb);
+
+u32 napi_skb_cache_get_bulk(void **skbs, u32 n);
+struct sk_buff *napi_build_skb(void *data, unsigned int frag_size);
+struct sk_buff *slab_build_skb(void *data);
+
+/**
+ * alloc_skb - allocate a network buffer
+ * @size: size to allocate
+ * @priority: allocation mask
+ *
+ * This function is a convenient wrapper around __alloc_skb().
+ */
static inline struct sk_buff *alloc_skb(unsigned int size,
gfp_t priority)
{
@@ -908,6 +1388,7 @@ struct sk_buff *alloc_skb_with_frags(unsigned long header_len,
int max_page_order,
int *errcode,
gfp_t gfp_mask);
+struct sk_buff *alloc_skb_for_msg(struct sk_buff *first);
/* Layout of fast clones : [skb1][skb2][fclone_ref] */
struct sk_buff_fclones {
@@ -923,9 +1404,9 @@ struct sk_buff_fclones {
* @sk: socket
* @skb: buffer
*
- * Returns true if skb is a fast clone, and its clone is not freed.
+ * Returns: true if skb is a fast clone, and its clone is not freed.
* Some drivers call skb_orphan() in their ndo_start_xmit(),
- * so we also check that this didnt happen.
+ * so we also check that didn't happen.
*/
static inline bool skb_fclone_busy(const struct sock *sk,
const struct sk_buff *skb)
@@ -936,24 +1417,27 @@ static inline bool skb_fclone_busy(const struct sock *sk,
return skb->fclone == SKB_FCLONE_ORIG &&
refcount_read(&fclones->fclone_ref) > 1 &&
- fclones->skb2.sk == sk;
+ READ_ONCE(fclones->skb2.sk) == sk;
}
+/**
+ * alloc_skb_fclone - allocate a network buffer from fclone cache
+ * @size: size to allocate
+ * @priority: allocation mask
+ *
+ * This function is a convenient wrapper around __alloc_skb().
+ */
static inline struct sk_buff *alloc_skb_fclone(unsigned int size,
gfp_t priority)
{
return __alloc_skb(size, priority, SKB_ALLOC_FCLONE, NUMA_NO_NODE);
}
-struct sk_buff *__alloc_skb_head(gfp_t priority, int node);
-static inline struct sk_buff *alloc_skb_head(gfp_t priority)
-{
- return __alloc_skb_head(priority, -1);
-}
-
struct sk_buff *skb_morph(struct sk_buff *dst, struct sk_buff *src);
+void skb_headers_offset_update(struct sk_buff *skb, int off);
int skb_copy_ubufs(struct sk_buff *skb, gfp_t gfp_mask);
struct sk_buff *skb_clone(struct sk_buff *skb, gfp_t priority);
+void skb_copy_header(struct sk_buff *new, const struct sk_buff *old);
struct sk_buff *skb_copy(const struct sk_buff *skb, gfp_t priority);
struct sk_buff *__pskb_copy_fclone(struct sk_buff *skb, int headroom,
gfp_t gfp_mask, bool fclone);
@@ -966,6 +1450,7 @@ static inline struct sk_buff *__pskb_copy(struct sk_buff *skb, int headroom,
int pskb_expand_head(struct sk_buff *skb, int nhead, int ntail, gfp_t gfp_mask);
struct sk_buff *skb_realloc_headroom(struct sk_buff *skb,
unsigned int headroom);
+struct sk_buff *skb_expand_head(struct sk_buff *skb, unsigned int headroom);
struct sk_buff *skb_copy_expand(const struct sk_buff *skb, int newheadroom,
int newtailroom, gfp_t priority);
int __must_check skb_to_sgvec_nomark(struct sk_buff *skb, struct scatterlist *sg,
@@ -973,16 +1458,27 @@ int __must_check skb_to_sgvec_nomark(struct sk_buff *skb, struct scatterlist *sg
int __must_check skb_to_sgvec(struct sk_buff *skb, struct scatterlist *sg,
int offset, int len);
int skb_cow_data(struct sk_buff *skb, int tailbits, struct sk_buff **trailer);
-int skb_pad(struct sk_buff *skb, int pad);
-#define dev_kfree_skb(a) consume_skb(a)
+int __skb_pad(struct sk_buff *skb, int pad, bool free_on_error);
-int skb_append_datato_frags(struct sock *sk, struct sk_buff *skb,
- int getfrag(void *from, char *to, int offset,
- int len, int odd, struct sk_buff *skb),
- void *from, int length);
+/**
+ * skb_pad - zero pad the tail of an skb
+ * @skb: buffer to pad
+ * @pad: space to pad
+ *
+ * Ensure that a buffer is followed by a padding area that is zero
+ * filled. Used by network drivers which may DMA or transfer data
+ * beyond the buffer end onto the wire.
+ *
+ * May return error in out of memory cases. The skb is freed on error.
+ */
+static inline int skb_pad(struct sk_buff *skb, int pad)
+{
+ return __skb_pad(skb, pad, true);
+}
+#define dev_kfree_skb(a) consume_skb(a)
int skb_append_pagefrags(struct sk_buff *skb, struct page *page,
- int offset, size_t size);
+ int offset, size_t size, size_t max_frags);
struct skb_seq_state {
__u32 lower_offset;
@@ -992,6 +1488,7 @@ struct skb_seq_state {
struct sk_buff *root_skb;
struct sk_buff *cur_skb;
__u8 *frag_data;
+ __u32 frag_off;
};
void skb_prepare_seq_read(struct sk_buff *skb, unsigned int from,
@@ -999,6 +1496,7 @@ void skb_prepare_seq_read(struct sk_buff *skb, unsigned int from,
unsigned int skb_seq_read(unsigned int consumed, const u8 **data,
struct skb_seq_state *st);
void skb_abort_seq_read(struct skb_seq_state *st);
+int skb_copy_seq_read(struct skb_seq_state *st, int offset, void *to, int len);
unsigned int skb_find_text(struct sk_buff *skb, unsigned int from,
unsigned int to, struct ts_config *config);
@@ -1070,36 +1568,40 @@ __skb_set_sw_hash(struct sk_buff *skb, __u32 hash, bool is_l4)
__skb_set_hash(skb, hash, true, is_l4);
}
-void __skb_get_hash(struct sk_buff *skb);
-u32 __skb_get_hash_symmetric(const struct sk_buff *skb);
-u32 skb_get_poff(const struct sk_buff *skb);
-u32 __skb_get_poff(const struct sk_buff *skb, void *data,
- const struct flow_keys *keys, int hlen);
-__be32 __skb_flow_get_ports(const struct sk_buff *skb, int thoff, u8 ip_proto,
- void *data, int hlen_proto);
+u32 __skb_get_hash_symmetric_net(const struct net *net, const struct sk_buff *skb);
-static inline __be32 skb_flow_get_ports(const struct sk_buff *skb,
- int thoff, u8 ip_proto)
+static inline u32 __skb_get_hash_symmetric(const struct sk_buff *skb)
{
- return __skb_flow_get_ports(skb, thoff, ip_proto, NULL, 0);
+ return __skb_get_hash_symmetric_net(NULL, skb);
}
+void __skb_get_hash_net(const struct net *net, struct sk_buff *skb);
+u32 skb_get_poff(const struct sk_buff *skb);
+u32 __skb_get_poff(const struct sk_buff *skb, const void *data,
+ const struct flow_keys_basic *keys, int hlen);
+__be32 skb_flow_get_ports(const struct sk_buff *skb, int thoff, u8 ip_proto,
+ const void *data, int hlen_proto);
+
void skb_flow_dissector_init(struct flow_dissector *flow_dissector,
const struct flow_dissector_key *key,
unsigned int key_count);
-bool __skb_flow_dissect(const struct sk_buff *skb,
+struct bpf_flow_dissector;
+u32 bpf_flow_dissect(struct bpf_prog *prog, struct bpf_flow_dissector *ctx,
+ __be16 proto, int nhoff, int hlen, unsigned int flags);
+
+bool __skb_flow_dissect(const struct net *net,
+ const struct sk_buff *skb,
struct flow_dissector *flow_dissector,
- void *target_container,
- void *data, __be16 proto, int nhoff, int hlen,
- unsigned int flags);
+ void *target_container, const void *data,
+ __be16 proto, int nhoff, int hlen, unsigned int flags);
static inline bool skb_flow_dissect(const struct sk_buff *skb,
struct flow_dissector *flow_dissector,
void *target_container, unsigned int flags)
{
- return __skb_flow_dissect(skb, flow_dissector, target_container,
- NULL, 0, 0, 0, flags);
+ return __skb_flow_dissect(NULL, skb, flow_dissector,
+ target_container, NULL, 0, 0, 0, flags);
}
static inline bool skb_flow_dissect_flow_keys(const struct sk_buff *skb,
@@ -1107,49 +1609,66 @@ static inline bool skb_flow_dissect_flow_keys(const struct sk_buff *skb,
unsigned int flags)
{
memset(flow, 0, sizeof(*flow));
- return __skb_flow_dissect(skb, &flow_keys_dissector, flow,
- NULL, 0, 0, 0, flags);
+ return __skb_flow_dissect(NULL, skb, &flow_keys_dissector,
+ flow, NULL, 0, 0, 0, flags);
}
-static inline bool skb_flow_dissect_flow_keys_buf(struct flow_keys *flow,
- void *data, __be16 proto,
- int nhoff, int hlen,
- unsigned int flags)
+static inline bool
+skb_flow_dissect_flow_keys_basic(const struct net *net,
+ const struct sk_buff *skb,
+ struct flow_keys_basic *flow,
+ const void *data, __be16 proto,
+ int nhoff, int hlen, unsigned int flags)
{
memset(flow, 0, sizeof(*flow));
- return __skb_flow_dissect(NULL, &flow_keys_buf_dissector, flow,
+ return __skb_flow_dissect(net, skb, &flow_keys_basic_dissector, flow,
data, proto, nhoff, hlen, flags);
}
-static inline __u32 skb_get_hash(struct sk_buff *skb)
+void skb_flow_dissect_meta(const struct sk_buff *skb,
+ struct flow_dissector *flow_dissector,
+ void *target_container);
+
+/* Gets a skb connection tracking info, ctinfo map should be a
+ * map of mapsize to translate enum ip_conntrack_info states
+ * to user states.
+ */
+void
+skb_flow_dissect_ct(const struct sk_buff *skb,
+ struct flow_dissector *flow_dissector,
+ void *target_container,
+ u16 *ctinfo_map, size_t mapsize,
+ bool post_ct, u16 zone);
+void
+skb_flow_dissect_tunnel_info(const struct sk_buff *skb,
+ struct flow_dissector *flow_dissector,
+ void *target_container);
+
+void skb_flow_dissect_hash(const struct sk_buff *skb,
+ struct flow_dissector *flow_dissector,
+ void *target_container);
+
+static inline __u32 skb_get_hash_net(const struct net *net, struct sk_buff *skb)
{
if (!skb->l4_hash && !skb->sw_hash)
- __skb_get_hash(skb);
+ __skb_get_hash_net(net, skb);
return skb->hash;
}
-__u32 __skb_get_hash_flowi6(struct sk_buff *skb, const struct flowi6 *fl6);
-
-static inline __u32 skb_get_hash_flowi6(struct sk_buff *skb, const struct flowi6 *fl6)
+static inline __u32 skb_get_hash(struct sk_buff *skb)
{
- if (!skb->l4_hash && !skb->sw_hash) {
- struct flow_keys keys;
- __u32 hash = __get_hash_from_flowi6(fl6, &keys);
-
- __skb_set_sw_hash(skb, hash, flow_keys_have_l4(&keys));
- }
+ if (!skb->l4_hash && !skb->sw_hash)
+ __skb_get_hash_net(NULL, skb);
return skb->hash;
}
-__u32 __skb_get_hash_flowi4(struct sk_buff *skb, const struct flowi4 *fl);
-
-static inline __u32 skb_get_hash_flowi4(struct sk_buff *skb, const struct flowi4 *fl4)
+static inline __u32 skb_get_hash_flowi6(struct sk_buff *skb, const struct flowi6 *fl6)
{
if (!skb->l4_hash && !skb->sw_hash) {
struct flow_keys keys;
- __u32 hash = __get_hash_from_flowi4(fl4, &keys);
+ __u32 hash = __get_hash_from_flowi6(fl6, &keys);
__skb_set_sw_hash(skb, hash, flow_keys_have_l4(&keys));
}
@@ -1157,7 +1676,8 @@ static inline __u32 skb_get_hash_flowi4(struct sk_buff *skb, const struct flowi4
return skb->hash;
}
-__u32 skb_get_hash_perturb(const struct sk_buff *skb, u32 perturb);
+__u32 skb_get_hash_perturb(const struct sk_buff *skb,
+ const siphash_key_t *perturb);
static inline __u32 skb_get_hash_raw(const struct sk_buff *skb)
{
@@ -1171,6 +1691,33 @@ static inline void skb_copy_hash(struct sk_buff *to, const struct sk_buff *from)
to->l4_hash = from->l4_hash;
};
+static inline int skb_cmp_decrypted(const struct sk_buff *skb1,
+ const struct sk_buff *skb2)
+{
+#ifdef CONFIG_SKB_DECRYPTED
+ return skb2->decrypted - skb1->decrypted;
+#else
+ return 0;
+#endif
+}
+
+static inline bool skb_is_decrypted(const struct sk_buff *skb)
+{
+#ifdef CONFIG_SKB_DECRYPTED
+ return skb->decrypted;
+#else
+ return false;
+#endif
+}
+
+static inline void skb_copy_decrypted(struct sk_buff *to,
+ const struct sk_buff *from)
+{
+#ifdef CONFIG_SKB_DECRYPTED
+ to->decrypted = from->decrypted;
+#endif
+}
+
#ifdef NET_SKBUFF_DATA_USES_OFFSET
static inline unsigned char *skb_end_pointer(const struct sk_buff *skb)
{
@@ -1181,6 +1728,11 @@ static inline unsigned int skb_end_offset(const struct sk_buff *skb)
{
return skb->end;
}
+
+static inline void skb_set_end_offset(struct sk_buff *skb, unsigned int offset)
+{
+ skb->end = offset;
+}
#else
static inline unsigned char *skb_end_pointer(const struct sk_buff *skb)
{
@@ -1191,8 +1743,42 @@ static inline unsigned int skb_end_offset(const struct sk_buff *skb)
{
return skb->end - skb->head;
}
+
+static inline void skb_set_end_offset(struct sk_buff *skb, unsigned int offset)
+{
+ skb->end = skb->head + offset;
+}
#endif
+extern const struct ubuf_info_ops msg_zerocopy_ubuf_ops;
+
+struct ubuf_info *msg_zerocopy_realloc(struct sock *sk, size_t size,
+ struct ubuf_info *uarg, bool devmem);
+
+void msg_zerocopy_put_abort(struct ubuf_info *uarg, bool have_uref);
+
+struct net_devmem_dmabuf_binding;
+
+int __zerocopy_sg_from_iter(struct msghdr *msg, struct sock *sk,
+ struct sk_buff *skb, struct iov_iter *from,
+ size_t length,
+ struct net_devmem_dmabuf_binding *binding);
+
+int zerocopy_fill_skb_from_iter(struct sk_buff *skb,
+ struct iov_iter *from, size_t length);
+
+static inline int skb_zerocopy_iter_dgram(struct sk_buff *skb,
+ struct msghdr *msg, int len)
+{
+ return __zerocopy_sg_from_iter(msg, skb->sk, skb, &msg->msg_iter, len,
+ NULL);
+}
+
+int skb_zerocopy_iter_stream(struct sock *sk, struct sk_buff *skb,
+ struct msghdr *msg, int len,
+ struct ubuf_info *uarg,
+ struct net_devmem_dmabuf_binding *binding);
+
/* Internal */
#define skb_shinfo(SKB) ((struct skb_shared_info *)(skb_end_pointer(SKB)))
@@ -1201,6 +1787,134 @@ static inline struct skb_shared_hwtstamps *skb_hwtstamps(struct sk_buff *skb)
return &skb_shinfo(skb)->hwtstamps;
}
+static inline struct ubuf_info *skb_zcopy(struct sk_buff *skb)
+{
+ bool is_zcopy = skb && skb_shinfo(skb)->flags & SKBFL_ZEROCOPY_ENABLE;
+
+ return is_zcopy ? skb_uarg(skb) : NULL;
+}
+
+static inline bool skb_zcopy_pure(const struct sk_buff *skb)
+{
+ return skb_shinfo(skb)->flags & SKBFL_PURE_ZEROCOPY;
+}
+
+static inline bool skb_zcopy_managed(const struct sk_buff *skb)
+{
+ return skb_shinfo(skb)->flags & SKBFL_MANAGED_FRAG_REFS;
+}
+
+static inline bool skb_pure_zcopy_same(const struct sk_buff *skb1,
+ const struct sk_buff *skb2)
+{
+ return skb_zcopy_pure(skb1) == skb_zcopy_pure(skb2);
+}
+
+static inline void net_zcopy_get(struct ubuf_info *uarg)
+{
+ refcount_inc(&uarg->refcnt);
+}
+
+static inline void skb_zcopy_init(struct sk_buff *skb, struct ubuf_info *uarg)
+{
+ skb_shinfo(skb)->destructor_arg = uarg;
+ skb_shinfo(skb)->flags |= uarg->flags;
+}
+
+static inline void skb_zcopy_set(struct sk_buff *skb, struct ubuf_info *uarg,
+ bool *have_ref)
+{
+ if (skb && uarg && !skb_zcopy(skb)) {
+ if (unlikely(have_ref && *have_ref))
+ *have_ref = false;
+ else
+ net_zcopy_get(uarg);
+ skb_zcopy_init(skb, uarg);
+ }
+}
+
+static inline void skb_zcopy_set_nouarg(struct sk_buff *skb, void *val)
+{
+ skb_shinfo(skb)->destructor_arg = (void *)((uintptr_t) val | 0x1UL);
+ skb_shinfo(skb)->flags |= SKBFL_ZEROCOPY_FRAG;
+}
+
+static inline bool skb_zcopy_is_nouarg(struct sk_buff *skb)
+{
+ return (uintptr_t) skb_shinfo(skb)->destructor_arg & 0x1UL;
+}
+
+static inline void *skb_zcopy_get_nouarg(struct sk_buff *skb)
+{
+ return (void *)((uintptr_t) skb_shinfo(skb)->destructor_arg & ~0x1UL);
+}
+
+static inline void net_zcopy_put(struct ubuf_info *uarg)
+{
+ if (uarg)
+ uarg->ops->complete(NULL, uarg, true);
+}
+
+static inline void net_zcopy_put_abort(struct ubuf_info *uarg, bool have_uref)
+{
+ if (uarg) {
+ if (uarg->ops == &msg_zerocopy_ubuf_ops)
+ msg_zerocopy_put_abort(uarg, have_uref);
+ else if (have_uref)
+ net_zcopy_put(uarg);
+ }
+}
+
+/* Release a reference on a zerocopy structure */
+static inline void skb_zcopy_clear(struct sk_buff *skb, bool zerocopy_success)
+{
+ struct ubuf_info *uarg = skb_zcopy(skb);
+
+ if (uarg) {
+ if (!skb_zcopy_is_nouarg(skb))
+ uarg->ops->complete(skb, uarg, zerocopy_success);
+
+ skb_shinfo(skb)->flags &= ~SKBFL_ALL_ZEROCOPY;
+ }
+}
+
+void __skb_zcopy_downgrade_managed(struct sk_buff *skb);
+
+static inline void skb_zcopy_downgrade_managed(struct sk_buff *skb)
+{
+ if (unlikely(skb_zcopy_managed(skb)))
+ __skb_zcopy_downgrade_managed(skb);
+}
+
+/* Return true if frags in this skb are readable by the host. */
+static inline bool skb_frags_readable(const struct sk_buff *skb)
+{
+ return !skb->unreadable;
+}
+
+static inline void skb_mark_not_on_list(struct sk_buff *skb)
+{
+ skb->next = NULL;
+}
+
+static inline void skb_poison_list(struct sk_buff *skb)
+{
+#ifdef CONFIG_DEBUG_NET
+ skb->next = SKB_LIST_POISON_NEXT;
+#endif
+}
+
+/* Iterate through singly-linked GSO fragments of an skb. */
+#define skb_list_walk_safe(first, skb, next_skb) \
+ for ((skb) = (first), (next_skb) = (skb) ? (skb)->next : NULL; (skb); \
+ (skb) = (next_skb), (next_skb) = (skb) ? (skb)->next : NULL)
+
+static inline void skb_list_del_init(struct sk_buff *skb)
+{
+ __list_del_entry(&skb->list);
+ skb_mark_not_on_list(skb);
+}
+
/**
* skb_queue_empty - check if a queue is empty
* @list: queue head
@@ -1213,6 +1927,19 @@ static inline int skb_queue_empty(const struct sk_buff_head *list)
}
/**
+ * skb_queue_empty_lockless - check if a queue is empty
+ * @list: queue head
+ *
+ * Returns true if the queue is empty, false otherwise.
+ * This variant can be used in lockless contexts.
+ */
+static inline bool skb_queue_empty_lockless(const struct sk_buff_head *list)
+{
+ return READ_ONCE(list->next) == (const struct sk_buff *) list;
+}
+
+
+/**
* skb_queue_is_last - check if skb is the last entry in the queue
* @list: queue head
* @skb: buffer
@@ -1288,8 +2015,7 @@ static inline struct sk_buff *skb_get(struct sk_buff *skb)
}
/*
- * If users == 1, we are the only owner and are can avoid redundant
- * atomic change.
+ * If users == 1, we are the only owner and can avoid redundant atomic changes.
*/
/**
@@ -1316,6 +2042,22 @@ static inline int skb_unclone(struct sk_buff *skb, gfp_t pri)
return 0;
}
+/* This variant of skb_unclone() makes sure skb->truesize
+ * and skb_end_offset() are not changed, whenever a new skb->head is needed.
+ *
+ * Indeed there is no guarantee that ksize(kmalloc(X)) == ksize(kmalloc(X))
+ * when various debugging features are in place.
+ */
+int __skb_unclone_keeptruesize(struct sk_buff *skb, gfp_t pri);
+static inline int skb_unclone_keeptruesize(struct sk_buff *skb, gfp_t pri)
+{
+ might_sleep_if(gfpflags_allow_blocking(pri));
+
+ if (skb_cloned(skb))
+ return __skb_unclone_keeptruesize(skb, pri);
+ return 0;
+}
+
/**
* skb_header_cloned - is the header a clone
* @skb: buffer to check
@@ -1346,27 +2088,10 @@ static inline int skb_header_unclone(struct sk_buff *skb, gfp_t pri)
}
/**
- * skb_header_release - release reference to header
- * @skb: buffer to operate on
+ * __skb_header_release() - allow clones to use the headroom
+ * @skb: buffer to operate on
*
- * Drop a reference to the header part of the buffer. This is done
- * by acquiring a payload reference. You must not read from the header
- * part of skb->data after this.
- * Note : Check if you can use __skb_header_release() instead.
- */
-static inline void skb_header_release(struct sk_buff *skb)
-{
- BUG_ON(skb->nohdr);
- skb->nohdr = 1;
- atomic_add(1 << SKB_DATAREF_SHIFT, &skb_shinfo(skb)->dataref);
-}
-
-/**
- * __skb_header_release - release reference to header
- * @skb: buffer to operate on
- *
- * Variant of skb_header_release() assuming skb is private to caller.
- * We can avoid one atomic operation.
+ * See "DOC: dataref and headerless skbs".
*/
static inline void __skb_header_release(struct sk_buff *skb)
{
@@ -1419,7 +2144,7 @@ static inline struct sk_buff *skb_share_check(struct sk_buff *skb, gfp_t pri)
* Copy shared buffers into a new sk_buff. We effectively do COW on
* packets to handle cases where we have a local reader and forward
* and a couple of other messy ones. The normal one is tcpdumping
- * a packet thats being forwarded.
+ * a packet that's being forwarded.
*/
/**
@@ -1475,6 +2200,17 @@ static inline struct sk_buff *skb_peek(const struct sk_buff_head *list_)
}
/**
+ * __skb_peek - peek at the head of a non-empty &sk_buff_head
+ * @list_: list to peek at
+ *
+ * Like skb_peek(), but the caller knows that the list is not empty.
+ */
+static inline struct sk_buff *__skb_peek(const struct sk_buff_head *list_)
+{
+ return list_->next;
+}
+
+/**
* skb_peek_next - peek skb following the given one from a queue
* @skb: skb to start from
* @list_: list to peek at
@@ -1508,7 +2244,7 @@ static inline struct sk_buff *skb_peek_next(struct sk_buff *skb,
*/
static inline struct sk_buff *skb_peek_tail(const struct sk_buff_head *list_)
{
- struct sk_buff *skb = list_->prev;
+ struct sk_buff *skb = READ_ONCE(list_->prev);
if (skb == (struct sk_buff *)list_)
skb = NULL;
@@ -1528,6 +2264,18 @@ static inline __u32 skb_queue_len(const struct sk_buff_head *list_)
}
/**
+ * skb_queue_len_lockless - get queue length
+ * @list_: list to measure
+ *
+ * Return the length of an &sk_buff queue.
+ * This variant can be used in lockless contexts.
+ */
+static inline __u32 skb_queue_len_lockless(const struct sk_buff_head *list_)
+{
+ return READ_ONCE(list_->qlen);
+}
+
+/**
* __skb_queue_head_init - initialize non-spinlock portions of sk_buff_head
* @list: queue to initialize
*
@@ -1570,16 +2318,18 @@ static inline void skb_queue_head_init_class(struct sk_buff_head *list,
* The "__skb_xxxx()" functions are the non-atomic ones that
* can only be called with interrupts disabled.
*/
-void skb_insert(struct sk_buff *old, struct sk_buff *newsk,
- struct sk_buff_head *list);
static inline void __skb_insert(struct sk_buff *newsk,
struct sk_buff *prev, struct sk_buff *next,
struct sk_buff_head *list)
{
- newsk->next = next;
- newsk->prev = prev;
- next->prev = prev->next = newsk;
- list->qlen++;
+ /* See skb_queue_empty_lockless() and skb_peek_tail()
+ * for the opposite READ_ONCE()
+ */
+ WRITE_ONCE(newsk->next, next);
+ WRITE_ONCE(newsk->prev, prev);
+ WRITE_ONCE(((struct sk_buff_list *)next)->prev, newsk);
+ WRITE_ONCE(((struct sk_buff_list *)prev)->next, newsk);
+ WRITE_ONCE(list->qlen, list->qlen + 1);
}
static inline void __skb_queue_splice(const struct sk_buff_head *list,
@@ -1589,11 +2339,11 @@ static inline void __skb_queue_splice(const struct sk_buff_head *list,
struct sk_buff *first = list->next;
struct sk_buff *last = list->prev;
- first->prev = prev;
- prev->next = first;
+ WRITE_ONCE(first->prev, prev);
+ WRITE_ONCE(prev->next, first);
- last->next = next;
- next->prev = last;
+ WRITE_ONCE(last->next, next);
+ WRITE_ONCE(next->prev, last);
}
/**
@@ -1674,7 +2424,7 @@ static inline void __skb_queue_after(struct sk_buff_head *list,
struct sk_buff *prev,
struct sk_buff *newsk)
{
- __skb_insert(newsk, prev, prev->next, list);
+ __skb_insert(newsk, prev, ((struct sk_buff_list *)prev)->next, list);
}
void skb_append(struct sk_buff *old, struct sk_buff *newsk,
@@ -1684,7 +2434,7 @@ static inline void __skb_queue_before(struct sk_buff_head *list,
struct sk_buff *next,
struct sk_buff *newsk)
{
- __skb_insert(newsk, next->prev, next, list);
+ __skb_insert(newsk, ((struct sk_buff_list *)next)->prev, next, list);
}
/**
@@ -1697,12 +2447,12 @@ static inline void __skb_queue_before(struct sk_buff_head *list,
*
* A buffer cannot be placed on two lists at the same time.
*/
-void skb_queue_head(struct sk_buff_head *list, struct sk_buff *newsk);
static inline void __skb_queue_head(struct sk_buff_head *list,
struct sk_buff *newsk)
{
__skb_queue_after(list, (struct sk_buff *)list, newsk);
}
+void skb_queue_head(struct sk_buff_head *list, struct sk_buff *newsk);
/**
* __skb_queue_tail - queue a buffer at the list tail
@@ -1714,12 +2464,12 @@ static inline void __skb_queue_head(struct sk_buff_head *list,
*
* A buffer cannot be placed on two lists at the same time.
*/
-void skb_queue_tail(struct sk_buff_head *list, struct sk_buff *newsk);
static inline void __skb_queue_tail(struct sk_buff_head *list,
struct sk_buff *newsk)
{
__skb_queue_before(list, (struct sk_buff *)list, newsk);
}
+void skb_queue_tail(struct sk_buff_head *list, struct sk_buff *newsk);
/*
* remove sk_buff from list. _Must_ be called atomically, and with
@@ -1730,12 +2480,12 @@ static inline void __skb_unlink(struct sk_buff *skb, struct sk_buff_head *list)
{
struct sk_buff *next, *prev;
- list->qlen--;
+ WRITE_ONCE(list->qlen, list->qlen - 1);
next = skb->next;
prev = skb->prev;
skb->next = skb->prev = NULL;
- next->prev = prev;
- prev->next = next;
+ WRITE_ONCE(next->prev, prev);
+ WRITE_ONCE(prev->next, next);
}
/**
@@ -1746,7 +2496,6 @@ static inline void __skb_unlink(struct sk_buff *skb, struct sk_buff_head *list)
* so must be used with appropriate locks held only. The head item is
* returned or %NULL if the list is empty.
*/
-struct sk_buff *skb_dequeue(struct sk_buff_head *list);
static inline struct sk_buff *__skb_dequeue(struct sk_buff_head *list)
{
struct sk_buff *skb = skb_peek(list);
@@ -1754,6 +2503,7 @@ static inline struct sk_buff *__skb_dequeue(struct sk_buff_head *list)
__skb_unlink(skb, list);
return skb;
}
+struct sk_buff *skb_dequeue(struct sk_buff_head *list);
/**
* __skb_dequeue_tail - remove from the tail of the queue
@@ -1763,7 +2513,6 @@ static inline struct sk_buff *__skb_dequeue(struct sk_buff_head *list)
* so must be used with appropriate locks held only. The tail item is
* returned or %NULL if the list is empty.
*/
-struct sk_buff *skb_dequeue_tail(struct sk_buff_head *list);
static inline struct sk_buff *__skb_dequeue_tail(struct sk_buff_head *list)
{
struct sk_buff *skb = skb_peek_tail(list);
@@ -1771,6 +2520,7 @@ static inline struct sk_buff *__skb_dequeue_tail(struct sk_buff_head *list)
__skb_unlink(skb, list);
return skb;
}
+struct sk_buff *skb_dequeue_tail(struct sk_buff_head *list);
static inline bool skb_is_nonlinear(const struct sk_buff *skb)
@@ -1783,20 +2533,70 @@ static inline unsigned int skb_headlen(const struct sk_buff *skb)
return skb->len - skb->data_len;
}
-static inline unsigned int skb_pagelen(const struct sk_buff *skb)
+static inline unsigned int __skb_pagelen(const struct sk_buff *skb)
{
unsigned int i, len = 0;
for (i = skb_shinfo(skb)->nr_frags - 1; (int)i >= 0; i--)
len += skb_frag_size(&skb_shinfo(skb)->frags[i]);
- return len + skb_headlen(skb);
+ return len;
+}
+
+static inline unsigned int skb_pagelen(const struct sk_buff *skb)
+{
+ return skb_headlen(skb) + __skb_pagelen(skb);
+}
+
+static inline void skb_frag_fill_netmem_desc(skb_frag_t *frag,
+ netmem_ref netmem, int off,
+ int size)
+{
+ frag->netmem = netmem;
+ frag->offset = off;
+ skb_frag_size_set(frag, size);
+}
+
+static inline void skb_frag_fill_page_desc(skb_frag_t *frag,
+ struct page *page,
+ int off, int size)
+{
+ skb_frag_fill_netmem_desc(frag, page_to_netmem(page), off, size);
+}
+
+static inline void __skb_fill_netmem_desc_noacc(struct skb_shared_info *shinfo,
+ int i, netmem_ref netmem,
+ int off, int size)
+{
+ skb_frag_t *frag = &shinfo->frags[i];
+
+ skb_frag_fill_netmem_desc(frag, netmem, off, size);
+}
+
+static inline void __skb_fill_page_desc_noacc(struct skb_shared_info *shinfo,
+ int i, struct page *page,
+ int off, int size)
+{
+ __skb_fill_netmem_desc_noacc(shinfo, i, page_to_netmem(page), off,
+ size);
+}
+
+/**
+ * skb_len_add - adds a number to len fields of skb
+ * @skb: buffer to add len to
+ * @delta: number of bytes to add
+ */
+static inline void skb_len_add(struct sk_buff *skb, int delta)
+{
+ skb->len += delta;
+ skb->data_len += delta;
+ skb->truesize += delta;
}
/**
- * __skb_fill_page_desc - initialise a paged fragment in an skb
+ * __skb_fill_netmem_desc - initialise a fragment in an skb
* @skb: buffer containing fragment to be initialised
- * @i: paged fragment index to initialise
- * @page: the page to use for this fragment
+ * @i: fragment index to initialise
+ * @netmem: the netmem to use for this fragment
* @off: the offset to the data with @page
* @size: the length of the data
*
@@ -1805,23 +2605,40 @@ static inline unsigned int skb_pagelen(const struct sk_buff *skb)
*
* Does not take any additional reference on the fragment.
*/
-static inline void __skb_fill_page_desc(struct sk_buff *skb, int i,
- struct page *page, int off, int size)
+static inline void __skb_fill_netmem_desc(struct sk_buff *skb, int i,
+ netmem_ref netmem, int off, int size)
{
- skb_frag_t *frag = &skb_shinfo(skb)->frags[i];
+ struct page *page;
- /*
- * Propagate page pfmemalloc to the skb if we can. The problem is
+ __skb_fill_netmem_desc_noacc(skb_shinfo(skb), i, netmem, off, size);
+
+ if (netmem_is_net_iov(netmem)) {
+ skb->unreadable = true;
+ return;
+ }
+
+ page = netmem_to_page(netmem);
+
+ /* Propagate page pfmemalloc to the skb if we can. The problem is
* that not all callers have unique ownership of the page but rely
* on page_is_pfmemalloc doing the right thing(tm).
*/
- frag->page.p = page;
- frag->page_offset = off;
- skb_frag_size_set(frag, size);
-
page = compound_head(page);
if (page_is_pfmemalloc(page))
- skb->pfmemalloc = true;
+ skb->pfmemalloc = true;
+}
+
+static inline void __skb_fill_page_desc(struct sk_buff *skb, int i,
+ struct page *page, int off, int size)
+{
+ __skb_fill_netmem_desc(skb, i, page_to_netmem(page), off, size);
+}
+
+static inline void skb_fill_netmem_desc(struct sk_buff *skb, int i,
+ netmem_ref netmem, int off, int size)
+{
+ __skb_fill_netmem_desc(skb, i, netmem, off, size);
+ skb_shinfo(skb)->nr_frags = i + 1;
}
/**
@@ -1841,18 +2658,44 @@ static inline void __skb_fill_page_desc(struct sk_buff *skb, int i,
static inline void skb_fill_page_desc(struct sk_buff *skb, int i,
struct page *page, int off, int size)
{
- __skb_fill_page_desc(skb, i, page, off, size);
- skb_shinfo(skb)->nr_frags = i + 1;
+ skb_fill_netmem_desc(skb, i, page_to_netmem(page), off, size);
}
-void skb_add_rx_frag(struct sk_buff *skb, int i, struct page *page, int off,
- int size, unsigned int truesize);
+/**
+ * skb_fill_page_desc_noacc - initialise a paged fragment in an skb
+ * @skb: buffer containing fragment to be initialised
+ * @i: paged fragment index to initialise
+ * @page: the page to use for this fragment
+ * @off: the offset to the data with @page
+ * @size: the length of the data
+ *
+ * Variant of skb_fill_page_desc() which does not deal with
+ * pfmemalloc, if page is not owned by us.
+ */
+static inline void skb_fill_page_desc_noacc(struct sk_buff *skb, int i,
+ struct page *page, int off,
+ int size)
+{
+ struct skb_shared_info *shinfo = skb_shinfo(skb);
+
+ __skb_fill_page_desc_noacc(shinfo, i, page, off, size);
+ shinfo->nr_frags = i + 1;
+}
+
+void skb_add_rx_frag_netmem(struct sk_buff *skb, int i, netmem_ref netmem,
+ int off, int size, unsigned int truesize);
+
+static inline void skb_add_rx_frag(struct sk_buff *skb, int i,
+ struct page *page, int off, int size,
+ unsigned int truesize)
+{
+ skb_add_rx_frag_netmem(skb, i, page_to_netmem(page), off, size,
+ truesize);
+}
void skb_coalesce_rx_frag(struct sk_buff *skb, int i, int size,
unsigned int truesize);
-#define SKB_PAGE_ASSERT(skb) BUG_ON(skb_shinfo(skb)->nr_frags)
-#define SKB_FRAG_ASSERT(skb) BUG_ON(skb_has_frag_list(skb))
#define SKB_LINEAR_ASSERT(skb) BUG_ON(skb_is_nonlinear(skb))
#ifdef NET_SKBUFF_DATA_USES_OFFSET
@@ -1890,6 +2733,20 @@ static inline void skb_set_tail_pointer(struct sk_buff *skb, const int offset)
#endif /* NET_SKBUFF_DATA_USES_OFFSET */
+static inline void skb_assert_len(struct sk_buff *skb)
+{
+#ifdef CONFIG_DEBUG_NET
+ if (WARN_ONCE(!skb->len, "%s\n", __func__))
+ DO_ONCE_LITE(skb_dump, KERN_ERR, skb, false);
+#endif /* CONFIG_DEBUG_NET */
+}
+
+#if defined(CONFIG_FAIL_SKB_REALLOC)
+void skb_might_realloc(struct sk_buff *skb);
+#else
+static inline void skb_might_realloc(struct sk_buff *skb) {}
+#endif
+
/*
* Add data to an sk_buff
*/
@@ -1953,6 +2810,8 @@ static inline void skb_put_u8(struct sk_buff *skb, u8 val)
void *skb_push(struct sk_buff *skb, unsigned int len);
static inline void *__skb_push(struct sk_buff *skb, unsigned int len)
{
+ DEBUG_NET_WARN_ON_ONCE(len > INT_MAX);
+
skb->data -= len;
skb->len += len;
return skb->data;
@@ -1961,8 +2820,17 @@ static inline void *__skb_push(struct sk_buff *skb, unsigned int len)
void *skb_pull(struct sk_buff *skb, unsigned int len);
static inline void *__skb_pull(struct sk_buff *skb, unsigned int len)
{
+ DEBUG_NET_WARN_ON_ONCE(len > INT_MAX);
+
skb->len -= len;
- BUG_ON(skb->len < skb->data_len);
+ if (unlikely(skb->len < skb->data_len)) {
+#if defined(CONFIG_DEBUG_NET)
+ skb->len += len;
+ pr_err("__skb_pull(len=%u)\n", len);
+ skb_dump(KERN_ERR, skb, false);
+#endif
+ BUG();
+ }
return skb->data += len;
}
@@ -1971,29 +2839,40 @@ static inline void *skb_pull_inline(struct sk_buff *skb, unsigned int len)
return unlikely(len > skb->len) ? NULL : __skb_pull(skb, len);
}
+void *skb_pull_data(struct sk_buff *skb, size_t len);
+
void *__pskb_pull_tail(struct sk_buff *skb, int delta);
-static inline void *__pskb_pull(struct sk_buff *skb, unsigned int len)
+static inline enum skb_drop_reason
+pskb_may_pull_reason(struct sk_buff *skb, unsigned int len)
{
- if (len > skb_headlen(skb) &&
- !__pskb_pull_tail(skb, len - skb_headlen(skb)))
- return NULL;
- skb->len -= len;
- return skb->data += len;
+ DEBUG_NET_WARN_ON_ONCE(len > INT_MAX);
+ skb_might_realloc(skb);
+
+ if (likely(len <= skb_headlen(skb)))
+ return SKB_NOT_DROPPED_YET;
+
+ if (unlikely(len > skb->len))
+ return SKB_DROP_REASON_PKT_TOO_SMALL;
+
+ if (unlikely(!__pskb_pull_tail(skb, len - skb_headlen(skb))))
+ return SKB_DROP_REASON_NOMEM;
+
+ return SKB_NOT_DROPPED_YET;
}
-static inline void *pskb_pull(struct sk_buff *skb, unsigned int len)
+static inline bool pskb_may_pull(struct sk_buff *skb, unsigned int len)
{
- return unlikely(len > skb->len) ? NULL : __pskb_pull(skb, len);
+ return pskb_may_pull_reason(skb, len) == SKB_NOT_DROPPED_YET;
}
-static inline int pskb_may_pull(struct sk_buff *skb, unsigned int len)
+static inline void *pskb_pull(struct sk_buff *skb, unsigned int len)
{
- if (likely(len <= skb_headlen(skb)))
- return 1;
- if (unlikely(len > skb->len))
- return 0;
- return __pskb_pull_tail(skb, len - skb_headlen(skb)) != NULL;
+ if (!pskb_may_pull(skb, len))
+ return NULL;
+
+ skb->len -= len;
+ return skb->data += len;
}
void skb_condense(struct sk_buff *skb);
@@ -2097,9 +2976,19 @@ static inline void skb_reset_inner_headers(struct sk_buff *skb)
skb->inner_transport_header = skb->transport_header;
}
+static inline int skb_mac_header_was_set(const struct sk_buff *skb)
+{
+ return skb->mac_header != (typeof(skb->mac_header))~0U;
+}
+
static inline void skb_reset_mac_len(struct sk_buff *skb)
{
- skb->mac_len = skb->network_header - skb->mac_header;
+ if (!skb_mac_header_was_set(skb)) {
+ DEBUG_NET_WARN_ON_ONCE(1);
+ skb->mac_len = 0;
+ } else {
+ skb->mac_len = skb->network_header - skb->mac_header;
+ }
}
static inline unsigned char *skb_inner_transport_header(const struct sk_buff
@@ -2115,7 +3004,10 @@ static inline int skb_inner_transport_offset(const struct sk_buff *skb)
static inline void skb_reset_inner_transport_header(struct sk_buff *skb)
{
- skb->inner_transport_header = skb->data - skb->head;
+ long offset = skb->data - skb->head;
+
+ DEBUG_NET_WARN_ON_ONCE(offset != (typeof(skb->inner_transport_header))offset);
+ skb->inner_transport_header = offset;
}
static inline void skb_set_inner_transport_header(struct sk_buff *skb,
@@ -2132,7 +3024,10 @@ static inline unsigned char *skb_inner_network_header(const struct sk_buff *skb)
static inline void skb_reset_inner_network_header(struct sk_buff *skb)
{
- skb->inner_network_header = skb->data - skb->head;
+ long offset = skb->data - skb->head;
+
+ DEBUG_NET_WARN_ON_ONCE(offset != (typeof(skb->inner_network_header))offset);
+ skb->inner_network_header = offset;
}
static inline void skb_set_inner_network_header(struct sk_buff *skb,
@@ -2142,6 +3037,11 @@ static inline void skb_set_inner_network_header(struct sk_buff *skb,
skb->inner_network_header += offset;
}
+static inline bool skb_inner_network_header_was_set(const struct sk_buff *skb)
+{
+ return skb->inner_network_header > 0;
+}
+
static inline unsigned char *skb_inner_mac_header(const struct sk_buff *skb)
{
return skb->head + skb->inner_mac_header;
@@ -2149,7 +3049,10 @@ static inline unsigned char *skb_inner_mac_header(const struct sk_buff *skb)
static inline void skb_reset_inner_mac_header(struct sk_buff *skb)
{
- skb->inner_mac_header = skb->data - skb->head;
+ long offset = skb->data - skb->head;
+
+ DEBUG_NET_WARN_ON_ONCE(offset != (typeof(skb->inner_mac_header))offset);
+ skb->inner_mac_header = offset;
}
static inline void skb_set_inner_mac_header(struct sk_buff *skb,
@@ -2165,12 +3068,39 @@ static inline bool skb_transport_header_was_set(const struct sk_buff *skb)
static inline unsigned char *skb_transport_header(const struct sk_buff *skb)
{
+ DEBUG_NET_WARN_ON_ONCE(!skb_transport_header_was_set(skb));
return skb->head + skb->transport_header;
}
static inline void skb_reset_transport_header(struct sk_buff *skb)
{
- skb->transport_header = skb->data - skb->head;
+ long offset = skb->data - skb->head;
+
+ DEBUG_NET_WARN_ON_ONCE(offset != (typeof(skb->transport_header))offset);
+ skb->transport_header = offset;
+}
+
+/**
+ * skb_reset_transport_header_careful - conditionally reset transport header
+ * @skb: buffer to alter
+ *
+ * Hardened version of skb_reset_transport_header().
+ *
+ * Returns: true if the operation was a success.
+ */
+static inline bool __must_check
+skb_reset_transport_header_careful(struct sk_buff *skb)
+{
+ long offset = skb->data - skb->head;
+
+ if (unlikely(offset != (typeof(skb->transport_header))offset))
+ return false;
+
+ if (unlikely(offset == (typeof(skb->transport_header))~0U))
+ return false;
+
+ skb->transport_header = offset;
+ return true;
}
static inline void skb_set_transport_header(struct sk_buff *skb,
@@ -2187,7 +3117,10 @@ static inline unsigned char *skb_network_header(const struct sk_buff *skb)
static inline void skb_reset_network_header(struct sk_buff *skb)
{
- skb->network_header = skb->data - skb->head;
+ long offset = skb->data - skb->head;
+
+ DEBUG_NET_WARN_ON_ONCE(offset != (typeof(skb->network_header))offset);
+ skb->network_header = offset;
}
static inline void skb_set_network_header(struct sk_buff *skb, const int offset)
@@ -2198,6 +3131,7 @@ static inline void skb_set_network_header(struct sk_buff *skb, const int offset)
static inline unsigned char *skb_mac_header(const struct sk_buff *skb)
{
+ DEBUG_NET_WARN_ON_ONCE(!skb_mac_header_was_set(skb));
return skb->head + skb->mac_header;
}
@@ -2208,17 +3142,21 @@ static inline int skb_mac_offset(const struct sk_buff *skb)
static inline u32 skb_mac_header_len(const struct sk_buff *skb)
{
+ DEBUG_NET_WARN_ON_ONCE(!skb_mac_header_was_set(skb));
return skb->network_header - skb->mac_header;
}
-static inline int skb_mac_header_was_set(const struct sk_buff *skb)
+static inline void skb_unset_mac_header(struct sk_buff *skb)
{
- return skb->mac_header != (typeof(skb->mac_header))~0U;
+ skb->mac_header = (typeof(skb->mac_header))~0U;
}
static inline void skb_reset_mac_header(struct sk_buff *skb)
{
- skb->mac_header = skb->data - skb->head;
+ long offset = skb->data - skb->head;
+
+ DEBUG_NET_WARN_ON_ONCE(offset != (typeof(skb->mac_header))offset);
+ skb->mac_header = offset;
}
static inline void skb_set_mac_header(struct sk_buff *skb, const int offset)
@@ -2232,17 +3170,16 @@ static inline void skb_pop_mac_header(struct sk_buff *skb)
skb->mac_header = skb->network_header;
}
-static inline void skb_probe_transport_header(struct sk_buff *skb,
- const int offset_hint)
+static inline void skb_probe_transport_header(struct sk_buff *skb)
{
- struct flow_keys keys;
+ struct flow_keys_basic keys;
if (skb_transport_header_was_set(skb))
return;
- else if (skb_flow_dissect_flow_keys(skb, &keys, 0))
+
+ if (skb_flow_dissect_flow_keys_basic(NULL, skb, &keys,
+ NULL, 0, 0, 0, 0))
skb_set_transport_header(skb, keys.control.thoff);
- else
- skb_set_transport_header(skb, offset_hint);
}
static inline void skb_mac_header_rebuild(struct sk_buff *skb)
@@ -2255,6 +3192,21 @@ static inline void skb_mac_header_rebuild(struct sk_buff *skb)
}
}
+/* Move the full mac header up to current network_header.
+ * Leaves skb->data pointing at offset skb->mac_len into the mac_header.
+ * Must be provided the complete mac header length.
+ */
+static inline void skb_mac_header_rebuild_full(struct sk_buff *skb, u32 full_mac_len)
+{
+ if (skb_mac_header_was_set(skb)) {
+ const unsigned char *old_mac = skb_mac_header(skb);
+
+ skb_set_mac_header(skb, -full_mac_len);
+ memmove(skb_mac_header(skb), old_mac, full_mac_len);
+ __skb_push(skb, full_mac_len - skb->mac_len);
+ }
+}
+
static inline int skb_checksum_start_offset(const struct sk_buff *skb)
{
return skb->csum_start - skb_headroom(skb);
@@ -2272,6 +3224,7 @@ static inline int skb_transport_offset(const struct sk_buff *skb)
static inline u32 skb_network_header_len(const struct sk_buff *skb)
{
+ DEBUG_NET_WARN_ON_ONCE(!skb_transport_header_was_set(skb));
return skb->transport_header - skb->network_header;
}
@@ -2290,9 +3243,15 @@ static inline int skb_inner_network_offset(const struct sk_buff *skb)
return skb_inner_network_header(skb) - skb->data;
}
+static inline enum skb_drop_reason
+pskb_network_may_pull_reason(struct sk_buff *skb, unsigned int len)
+{
+ return pskb_may_pull_reason(skb, skb_network_offset(skb) + len);
+}
+
static inline int pskb_network_may_pull(struct sk_buff *skb, unsigned int len)
{
- return pskb_may_pull(skb, skb_network_offset(skb) + len);
+ return pskb_network_may_pull_reason(skb, len) == SKB_NOT_DROPPED_YET;
}
/*
@@ -2336,7 +3295,7 @@ static inline int pskb_network_may_pull(struct sk_buff *skb, unsigned int len)
*
* Using max(32, L1_CACHE_BYTES) makes sense (especially with RPS)
* to reduce average number of cache lines per packet.
- * get_rps_cpus() for example only access one 64 bytes aligned block :
+ * get_rps_cpu() for example only access one 64 bytes aligned block :
* NET_IP_ALIGN(2) + ethernet_header(14) + IP_header(20/40) + ports(8)
*/
#ifndef NET_SKB_PAD
@@ -2347,10 +3306,8 @@ int ___pskb_trim(struct sk_buff *skb, unsigned int len);
static inline void __skb_set_length(struct sk_buff *skb, unsigned int len)
{
- if (unlikely(skb_is_nonlinear(skb))) {
- WARN_ON(1);
+ if (WARN_ON(skb_is_nonlinear(skb)))
return;
- }
skb->len = len;
skb_set_tail_pointer(skb, len);
}
@@ -2372,6 +3329,7 @@ static inline int __pskb_trim(struct sk_buff *skb, unsigned int len)
static inline int pskb_trim(struct sk_buff *skb, unsigned int len)
{
+ skb_might_realloc(skb);
return (len < skb->len) ? __pskb_trim(skb, len) : 0;
}
@@ -2434,30 +3392,75 @@ static inline void skb_orphan(struct sk_buff *skb)
*/
static inline int skb_orphan_frags(struct sk_buff *skb, gfp_t gfp_mask)
{
- if (likely(!(skb_shinfo(skb)->tx_flags & SKBTX_DEV_ZEROCOPY)))
+ if (likely(!skb_zcopy(skb)))
+ return 0;
+ if (skb_shinfo(skb)->flags & SKBFL_DONT_ORPHAN)
+ return 0;
+ return skb_copy_ubufs(skb, gfp_mask);
+}
+
+/* Frags must be orphaned, even if refcounted, if skb might loop to rx path */
+static inline int skb_orphan_frags_rx(struct sk_buff *skb, gfp_t gfp_mask)
+{
+ if (likely(!skb_zcopy(skb)))
return 0;
return skb_copy_ubufs(skb, gfp_mask);
}
/**
- * __skb_queue_purge - empty a list
+ * __skb_queue_purge_reason - empty a list
* @list: list to empty
+ * @reason: drop reason
*
* Delete all buffers on an &sk_buff list. Each buffer is removed from
* the list and one reference dropped. This function does not take the
* list lock and the caller must hold the relevant locks to use it.
*/
-void skb_queue_purge(struct sk_buff_head *list);
-static inline void __skb_queue_purge(struct sk_buff_head *list)
+static inline void __skb_queue_purge_reason(struct sk_buff_head *list,
+ enum skb_drop_reason reason)
{
struct sk_buff *skb;
+
while ((skb = __skb_dequeue(list)) != NULL)
- kfree_skb(skb);
+ kfree_skb_reason(skb, reason);
+}
+
+static inline void __skb_queue_purge(struct sk_buff_head *list)
+{
+ __skb_queue_purge_reason(list, SKB_DROP_REASON_QUEUE_PURGE);
}
-void skb_rbtree_purge(struct rb_root *root);
+void skb_queue_purge_reason(struct sk_buff_head *list,
+ enum skb_drop_reason reason);
+
+static inline void skb_queue_purge(struct sk_buff_head *list)
+{
+ skb_queue_purge_reason(list, SKB_DROP_REASON_QUEUE_PURGE);
+}
-void *netdev_alloc_frag(unsigned int fragsz);
+unsigned int skb_rbtree_purge(struct rb_root *root);
+void skb_errqueue_purge(struct sk_buff_head *list);
+
+void *__netdev_alloc_frag_align(unsigned int fragsz, unsigned int align_mask);
+
+/**
+ * netdev_alloc_frag - allocate a page fragment
+ * @fragsz: fragment size
+ *
+ * Allocates a frag from a page for receive buffer.
+ * Uses GFP_ATOMIC allocations.
+ */
+static inline void *netdev_alloc_frag(unsigned int fragsz)
+{
+ return __netdev_alloc_frag_align(fragsz, ~0u);
+}
+
+static inline void *netdev_alloc_frag_align(unsigned int fragsz,
+ unsigned int align)
+{
+ WARN_ON_ONCE(!is_power_of_2(align));
+ return __netdev_alloc_frag_align(fragsz, -align);
+}
struct sk_buff *__netdev_alloc_skb(struct net_device *dev, unsigned int length,
gfp_t gfp_mask);
@@ -2516,18 +3519,25 @@ static inline void skb_free_frag(void *addr)
page_frag_free(addr);
}
-void *napi_alloc_frag(unsigned int fragsz);
-struct sk_buff *__napi_alloc_skb(struct napi_struct *napi,
- unsigned int length, gfp_t gfp_mask);
-static inline struct sk_buff *napi_alloc_skb(struct napi_struct *napi,
- unsigned int length)
+void *__napi_alloc_frag_align(unsigned int fragsz, unsigned int align_mask);
+
+static inline void *napi_alloc_frag(unsigned int fragsz)
+{
+ return __napi_alloc_frag_align(fragsz, ~0u);
+}
+
+static inline void *napi_alloc_frag_align(unsigned int fragsz,
+ unsigned int align)
{
- return __napi_alloc_skb(napi, length, GFP_ATOMIC);
+ WARN_ON_ONCE(!is_power_of_2(align));
+ return __napi_alloc_frag_align(fragsz, -align);
}
+
+struct sk_buff *napi_alloc_skb(struct napi_struct *napi, unsigned int length);
void napi_consume_skb(struct sk_buff *skb, int budget);
-void __kfree_skb_flush(void);
-void __kfree_skb_defer(struct sk_buff *skb);
+void napi_skb_free_stolen_head(struct sk_buff *skb);
+void __napi_kfree_skb(struct sk_buff *skb, enum skb_drop_reason reason);
/**
* __dev_alloc_pages - allocate page for network Rx
@@ -2538,26 +3548,28 @@ void __kfree_skb_defer(struct sk_buff *skb);
*
* %NULL is returned if there is no free memory.
*/
-static inline struct page *__dev_alloc_pages(gfp_t gfp_mask,
+static inline struct page *__dev_alloc_pages_noprof(gfp_t gfp_mask,
unsigned int order)
{
/* This piece of code contains several assumptions.
- * 1. This is for device Rx, therefor a cold page is preferred.
+ * 1. This is for device Rx, therefore a cold page is preferred.
* 2. The expectation is the user wants a compound page.
* 3. If requesting a order 0 page it will not be compound
* due to the check to see if order has a value in prep_new_page
* 4. __GFP_MEMALLOC is ignored if __GFP_NOMEMALLOC is set due to
* code in gfp_to_alloc_flags that should be enforcing this.
*/
- gfp_mask |= __GFP_COLD | __GFP_COMP | __GFP_MEMALLOC;
+ gfp_mask |= __GFP_COMP | __GFP_MEMALLOC;
- return alloc_pages_node(NUMA_NO_NODE, gfp_mask, order);
+ return alloc_pages_node_noprof(NUMA_NO_NODE, gfp_mask, order);
}
+#define __dev_alloc_pages(...) alloc_hooks(__dev_alloc_pages_noprof(__VA_ARGS__))
-static inline struct page *dev_alloc_pages(unsigned int order)
-{
- return __dev_alloc_pages(GFP_ATOMIC | __GFP_NOWARN, order);
-}
+/*
+ * This specialized allocator has to be a macro for its allocations to be
+ * accounted separately (to have a separate alloc_tag).
+ */
+#define dev_alloc_pages(_order) __dev_alloc_pages(GFP_ATOMIC | __GFP_NOWARN, _order)
/**
* __dev_alloc_page - allocate a page for network Rx
@@ -2567,14 +3579,32 @@ static inline struct page *dev_alloc_pages(unsigned int order)
*
* %NULL is returned if there is no free memory.
*/
-static inline struct page *__dev_alloc_page(gfp_t gfp_mask)
+static inline struct page *__dev_alloc_page_noprof(gfp_t gfp_mask)
{
- return __dev_alloc_pages(gfp_mask, 0);
+ return __dev_alloc_pages_noprof(gfp_mask, 0);
}
+#define __dev_alloc_page(...) alloc_hooks(__dev_alloc_page_noprof(__VA_ARGS__))
+
+/*
+ * This specialized allocator has to be a macro for its allocations to be
+ * accounted separately (to have a separate alloc_tag).
+ */
+#define dev_alloc_page() dev_alloc_pages(0)
-static inline struct page *dev_alloc_page(void)
+/**
+ * dev_page_is_reusable - check whether a page can be reused for network Rx
+ * @page: the page to test
+ *
+ * A page shouldn't be considered for reusing/recycling if it was allocated
+ * under memory pressure or at a distant memory node.
+ *
+ * Returns: false if this page should be returned to page allocator, true
+ * otherwise.
+ */
+static inline bool dev_page_is_reusable(const struct page *page)
{
- return dev_alloc_pages(0);
+ return likely(page_to_nid(page) == numa_mem_id() &&
+ !page_is_pfmemalloc(page));
}
/**
@@ -2582,128 +3612,157 @@ static inline struct page *dev_alloc_page(void)
* @page: The page that was allocated from skb_alloc_page
* @skb: The skb that may need pfmemalloc set
*/
-static inline void skb_propagate_pfmemalloc(struct page *page,
- struct sk_buff *skb)
+static inline void skb_propagate_pfmemalloc(const struct page *page,
+ struct sk_buff *skb)
{
if (page_is_pfmemalloc(page))
skb->pfmemalloc = true;
}
/**
- * skb_frag_page - retrieve the page referred to by a paged fragment
+ * skb_frag_off() - Returns the offset of a skb fragment
* @frag: the paged fragment
- *
- * Returns the &struct page associated with @frag.
*/
-static inline struct page *skb_frag_page(const skb_frag_t *frag)
+static inline unsigned int skb_frag_off(const skb_frag_t *frag)
{
- return frag->page.p;
+ return frag->offset;
}
/**
- * __skb_frag_ref - take an addition reference on a paged fragment.
- * @frag: the paged fragment
- *
- * Takes an additional reference on the paged fragment @frag.
+ * skb_frag_off_add() - Increments the offset of a skb fragment by @delta
+ * @frag: skb fragment
+ * @delta: value to add
+ */
+static inline void skb_frag_off_add(skb_frag_t *frag, int delta)
+{
+ frag->offset += delta;
+}
+
+/**
+ * skb_frag_off_set() - Sets the offset of a skb fragment
+ * @frag: skb fragment
+ * @offset: offset of fragment
*/
-static inline void __skb_frag_ref(skb_frag_t *frag)
+static inline void skb_frag_off_set(skb_frag_t *frag, unsigned int offset)
{
- get_page(skb_frag_page(frag));
+ frag->offset = offset;
}
/**
- * skb_frag_ref - take an addition reference on a paged fragment of an skb.
- * @skb: the buffer
- * @f: the fragment offset.
+ * skb_frag_off_copy() - Sets the offset of a skb fragment from another fragment
+ * @fragto: skb fragment where offset is set
+ * @fragfrom: skb fragment offset is copied from
+ */
+static inline void skb_frag_off_copy(skb_frag_t *fragto,
+ const skb_frag_t *fragfrom)
+{
+ fragto->offset = fragfrom->offset;
+}
+
+/* Return: true if the skb_frag contains a net_iov. */
+static inline bool skb_frag_is_net_iov(const skb_frag_t *frag)
+{
+ return netmem_is_net_iov(frag->netmem);
+}
+
+/**
+ * skb_frag_net_iov - retrieve the net_iov referred to by fragment
+ * @frag: the fragment
*
- * Takes an additional reference on the @f'th paged fragment of @skb.
+ * Return: the &struct net_iov associated with @frag. Returns NULL if this
+ * frag has no associated net_iov.
*/
-static inline void skb_frag_ref(struct sk_buff *skb, int f)
+static inline struct net_iov *skb_frag_net_iov(const skb_frag_t *frag)
{
- __skb_frag_ref(&skb_shinfo(skb)->frags[f]);
+ if (!skb_frag_is_net_iov(frag))
+ return NULL;
+
+ return netmem_to_net_iov(frag->netmem);
}
/**
- * __skb_frag_unref - release a reference on a paged fragment.
+ * skb_frag_page - retrieve the page referred to by a paged fragment
* @frag: the paged fragment
*
- * Releases a reference on the paged fragment @frag.
+ * Return: the &struct page associated with @frag. Returns NULL if this frag
+ * has no associated page.
*/
-static inline void __skb_frag_unref(skb_frag_t *frag)
+static inline struct page *skb_frag_page(const skb_frag_t *frag)
{
- put_page(skb_frag_page(frag));
+ if (skb_frag_is_net_iov(frag))
+ return NULL;
+
+ return netmem_to_page(frag->netmem);
}
/**
- * skb_frag_unref - release a reference on a paged fragment of an skb.
- * @skb: the buffer
- * @f: the fragment offset
+ * skb_frag_netmem - retrieve the netmem referred to by a fragment
+ * @frag: the fragment
*
- * Releases a reference on the @f'th paged fragment of @skb.
+ * Return: the &netmem_ref associated with @frag.
*/
-static inline void skb_frag_unref(struct sk_buff *skb, int f)
+static inline netmem_ref skb_frag_netmem(const skb_frag_t *frag)
{
- __skb_frag_unref(&skb_shinfo(skb)->frags[f]);
+ return frag->netmem;
}
+int skb_pp_cow_data(struct page_pool *pool, struct sk_buff **pskb,
+ unsigned int headroom);
+int skb_cow_data_for_xdp(struct page_pool *pool, struct sk_buff **pskb,
+ const struct bpf_prog *prog);
+
/**
* skb_frag_address - gets the address of the data contained in a paged fragment
* @frag: the paged fragment buffer
*
- * Returns the address of the data within @frag. The page must already
+ * Returns: the address of the data within @frag. The page must already
* be mapped.
*/
static inline void *skb_frag_address(const skb_frag_t *frag)
{
- return page_address(skb_frag_page(frag)) + frag->page_offset;
+ if (!skb_frag_page(frag))
+ return NULL;
+
+ return page_address(skb_frag_page(frag)) + skb_frag_off(frag);
}
/**
* skb_frag_address_safe - gets the address of the data contained in a paged fragment
* @frag: the paged fragment buffer
*
- * Returns the address of the data within @frag. Checks that the page
+ * Returns: the address of the data within @frag. Checks that the page
* is mapped and returns %NULL otherwise.
*/
static inline void *skb_frag_address_safe(const skb_frag_t *frag)
{
- void *ptr = page_address(skb_frag_page(frag));
+ struct page *page = skb_frag_page(frag);
+ void *ptr;
+
+ if (!page)
+ return NULL;
+
+ ptr = page_address(page);
if (unlikely(!ptr))
return NULL;
- return ptr + frag->page_offset;
+ return ptr + skb_frag_off(frag);
}
/**
- * __skb_frag_set_page - sets the page contained in a paged fragment
- * @frag: the paged fragment
- * @page: the page to set
- *
- * Sets the fragment @frag to contain @page.
+ * skb_frag_page_copy() - sets the page in a fragment from another fragment
+ * @fragto: skb fragment where page is set
+ * @fragfrom: skb fragment page is copied from
*/
-static inline void __skb_frag_set_page(skb_frag_t *frag, struct page *page)
+static inline void skb_frag_page_copy(skb_frag_t *fragto,
+ const skb_frag_t *fragfrom)
{
- frag->page.p = page;
-}
-
-/**
- * skb_frag_set_page - sets the page contained in a paged fragment of an skb
- * @skb: the buffer
- * @f: the fragment offset
- * @page: the page to set
- *
- * Sets the @f'th fragment of @skb to contain @page.
- */
-static inline void skb_frag_set_page(struct sk_buff *skb, int f,
- struct page *page)
-{
- __skb_frag_set_page(&skb_shinfo(skb)->frags[f], page);
+ fragto->netmem = fragfrom->netmem;
}
bool skb_page_frag_refill(unsigned int sz, struct page_frag *pfrag, gfp_t prio);
/**
- * skb_frag_dma_map - maps a paged fragment via the DMA API
+ * __skb_frag_dma_map - maps a paged fragment via the DMA API
* @dev: the device to map the fragment to
* @frag: the paged fragment to map
* @offset: the offset within the fragment (starting at the
@@ -2713,15 +3772,40 @@ bool skb_page_frag_refill(unsigned int sz, struct page_frag *pfrag, gfp_t prio);
*
* Maps the page associated with @frag to @device.
*/
-static inline dma_addr_t skb_frag_dma_map(struct device *dev,
- const skb_frag_t *frag,
- size_t offset, size_t size,
- enum dma_data_direction dir)
-{
+static inline dma_addr_t __skb_frag_dma_map(struct device *dev,
+ const skb_frag_t *frag,
+ size_t offset, size_t size,
+ enum dma_data_direction dir)
+{
+ if (skb_frag_is_net_iov(frag)) {
+ return netmem_to_net_iov(frag->netmem)->desc.dma_addr +
+ offset + frag->offset;
+ }
return dma_map_page(dev, skb_frag_page(frag),
- frag->page_offset + offset, size, dir);
+ skb_frag_off(frag) + offset, size, dir);
}
+#define skb_frag_dma_map(dev, frag, ...) \
+ CONCATENATE(_skb_frag_dma_map, \
+ COUNT_ARGS(__VA_ARGS__))(dev, frag, ##__VA_ARGS__)
+
+#define __skb_frag_dma_map1(dev, frag, offset, uf, uo) ({ \
+ const skb_frag_t *uf = (frag); \
+ size_t uo = (offset); \
+ \
+ __skb_frag_dma_map(dev, uf, uo, skb_frag_size(uf) - uo, \
+ DMA_TO_DEVICE); \
+})
+#define _skb_frag_dma_map1(dev, frag, offset) \
+ __skb_frag_dma_map1(dev, frag, offset, __UNIQUE_ID(frag_), \
+ __UNIQUE_ID(offset_))
+#define _skb_frag_dma_map0(dev, frag) \
+ _skb_frag_dma_map1(dev, frag, 0)
+#define _skb_frag_dma_map2(dev, frag, offset, size) \
+ __skb_frag_dma_map(dev, frag, offset, size, DMA_TO_DEVICE)
+#define _skb_frag_dma_map3(dev, frag, offset, size, dir) \
+ __skb_frag_dma_map(dev, frag, offset, size, dir)
+
static inline struct sk_buff *pskb_copy(struct sk_buff *skb,
gfp_t gfp_mask)
{
@@ -2822,59 +3906,69 @@ static inline int skb_padto(struct sk_buff *skb, unsigned int len)
}
/**
- * skb_put_padto - increase size and pad an skbuff up to a minimal size
+ * __skb_put_padto - increase size and pad an skbuff up to a minimal size
* @skb: buffer to pad
* @len: minimal length
+ * @free_on_error: free buffer on error
*
* Pads up a buffer to ensure the trailing bytes exist and are
* blanked. If the buffer already contains sufficient data it
* is untouched. Otherwise it is extended. Returns zero on
- * success. The skb is freed on error.
+ * success. The skb is freed on error if @free_on_error is true.
*/
-static inline int skb_put_padto(struct sk_buff *skb, unsigned int len)
+static inline int __must_check __skb_put_padto(struct sk_buff *skb,
+ unsigned int len,
+ bool free_on_error)
{
unsigned int size = skb->len;
if (unlikely(size < len)) {
len -= size;
- if (skb_pad(skb, len))
+ if (__skb_pad(skb, len, free_on_error))
return -ENOMEM;
__skb_put(skb, len);
}
return 0;
}
-static inline int skb_add_data(struct sk_buff *skb,
- struct iov_iter *from, int copy)
+/**
+ * skb_put_padto - increase size and pad an skbuff up to a minimal size
+ * @skb: buffer to pad
+ * @len: minimal length
+ *
+ * Pads up a buffer to ensure the trailing bytes exist and are
+ * blanked. If the buffer already contains sufficient data it
+ * is untouched. Otherwise it is extended. Returns zero on
+ * success. The skb is freed on error.
+ */
+static inline int __must_check skb_put_padto(struct sk_buff *skb, unsigned int len)
{
- const int off = skb->len;
-
- if (skb->ip_summed == CHECKSUM_NONE) {
- __wsum csum = 0;
- if (csum_and_copy_from_iter_full(skb_put(skb, copy), copy,
- &csum, from)) {
- skb->csum = csum_block_add(skb->csum, csum, off);
- return 0;
- }
- } else if (copy_from_iter_full(skb_put(skb, copy), copy, from))
- return 0;
-
- __skb_trim(skb, off);
- return -EFAULT;
+ return __skb_put_padto(skb, len, true);
}
-static inline bool skb_can_coalesce(struct sk_buff *skb, int i,
- const struct page *page, int off)
+bool csum_and_copy_from_iter_full(void *addr, size_t bytes, __wsum *csum, struct iov_iter *i)
+ __must_check;
+
+static inline bool skb_can_coalesce_netmem(struct sk_buff *skb, int i,
+ netmem_ref netmem, int off)
{
+ if (skb_zcopy(skb))
+ return false;
if (i) {
- const struct skb_frag_struct *frag = &skb_shinfo(skb)->frags[i - 1];
+ const skb_frag_t *frag = &skb_shinfo(skb)->frags[i - 1];
- return page == skb_frag_page(frag) &&
- off == frag->page_offset + skb_frag_size(frag);
+ return netmem == skb_frag_netmem(frag) &&
+ off == skb_frag_off(frag) + skb_frag_size(frag);
}
return false;
}
+static inline bool skb_can_coalesce(struct sk_buff *skb, int i,
+ const struct page *page, int off)
+{
+ return skb_can_coalesce_netmem(skb, i, page_to_netmem(page), off);
+}
+
static inline int __skb_linearize(struct sk_buff *skb)
{
return __pskb_pull_tail(skb, skb->data_len) ? 0 : -ENOMEM;
@@ -2896,13 +3990,13 @@ static inline int skb_linearize(struct sk_buff *skb)
* skb_has_shared_frag - can any frag be overwritten
* @skb: buffer to test
*
- * Return true if the skb has at least one frag that might be modified
+ * Return: true if the skb has at least one frag that might be modified
* by an external entity (as in vmsplice()/sendfile())
*/
static inline bool skb_has_shared_frag(const struct sk_buff *skb)
{
return skb_is_nonlinear(skb) &&
- skb_shinfo(skb)->tx_flags & SKBTX_SHARED_FRAG;
+ skb_shinfo(skb)->flags & SKBFL_SHARED_FRAG;
}
/**
@@ -2943,7 +4037,12 @@ __skb_postpull_rcsum(struct sk_buff *skb, const void *start, unsigned int len,
static inline void skb_postpull_rcsum(struct sk_buff *skb,
const void *start, unsigned int len)
{
- __skb_postpull_rcsum(skb, start, len, 0);
+ if (skb->ip_summed == CHECKSUM_COMPLETE)
+ skb->csum = wsum_negate(csum_partial(start, len,
+ wsum_negate(skb->csum)));
+ else if (skb->ip_summed == CHECKSUM_PARTIAL &&
+ skb_checksum_start_offset(skb) < 0)
+ skb->ip_summed = CHECKSUM_NONE;
}
static __always_inline void
@@ -2990,6 +4089,7 @@ static inline void *skb_push_rcsum(struct sk_buff *skb, unsigned int len)
return skb->data;
}
+int pskb_trim_rcsum_slow(struct sk_buff *skb, unsigned int len);
/**
* pskb_trim_rcsum - trim received skb and update checksum
* @skb: buffer to trim
@@ -2997,15 +4097,15 @@ static inline void *skb_push_rcsum(struct sk_buff *skb, unsigned int len)
*
* This is exactly the same as pskb_trim except that it ensures the
* checksum of received packets are still valid after the operation.
+ * It can change skb pointers.
*/
static inline int pskb_trim_rcsum(struct sk_buff *skb, unsigned int len)
{
+ skb_might_realloc(skb);
if (likely(len >= skb->len))
return 0;
- if (skb->ip_summed == CHECKSUM_COMPLETE)
- skb->ip_summed = CHECKSUM_NONE;
- return __pskb_trim(skb, len);
+ return pskb_trim_rcsum_slow(skb, len);
}
static inline int __skb_trim_rcsum(struct sk_buff *skb, unsigned int len)
@@ -3023,6 +4123,12 @@ static inline int __skb_grow_rcsum(struct sk_buff *skb, unsigned int len)
return __skb_grow(skb, len);
}
+#define rb_to_skb(rb) rb_entry_safe(rb, struct sk_buff, rbnode)
+#define skb_rb_first(root) rb_to_skb(rb_first(root))
+#define skb_rb_last(root) rb_to_skb(rb_last(root))
+#define skb_rb_next(skb) rb_to_skb(rb_next(&(skb)->rbnode))
+#define skb_rb_prev(skb) rb_to_skb(rb_prev(&(skb)->rbnode))
+
#define skb_queue_walk(queue, skb) \
for (skb = (queue)->next; \
skb != (struct sk_buff *)(queue); \
@@ -3037,6 +4143,18 @@ static inline int __skb_grow_rcsum(struct sk_buff *skb, unsigned int len)
for (; skb != (struct sk_buff *)(queue); \
skb = skb->next)
+#define skb_rbtree_walk(skb, root) \
+ for (skb = skb_rb_first(root); skb != NULL; \
+ skb = skb_rb_next(skb))
+
+#define skb_rbtree_walk_from(skb) \
+ for (; skb != NULL; \
+ skb = skb_rb_next(skb))
+
+#define skb_rbtree_walk_from_safe(skb, tmp) \
+ for (; tmp = skb ? skb_rb_next(skb) : NULL, (skb != NULL); \
+ skb = tmp)
+
#define skb_queue_walk_from_safe(queue, skb, tmp) \
for (tmp = skb->next; \
skb != (struct sk_buff *)(queue); \
@@ -3071,27 +4189,25 @@ static inline void skb_frag_list_init(struct sk_buff *skb)
for (iter = skb_shinfo(skb)->frag_list; iter; iter = iter->next)
-int __skb_wait_for_more_packets(struct sock *sk, int *err, long *timeo_p,
+int __skb_wait_for_more_packets(struct sock *sk, struct sk_buff_head *queue,
+ int *err, long *timeo_p,
const struct sk_buff *skb);
-struct sk_buff *__skb_try_recv_from_queue(struct sock *sk,
- struct sk_buff_head *queue,
+struct sk_buff *__skb_try_recv_from_queue(struct sk_buff_head *queue,
unsigned int flags,
- void (*destructor)(struct sock *sk,
- struct sk_buff *skb),
- int *peeked, int *off, int *err,
+ int *off, int *err,
struct sk_buff **last);
-struct sk_buff *__skb_try_recv_datagram(struct sock *sk, unsigned flags,
- void (*destructor)(struct sock *sk,
- struct sk_buff *skb),
- int *peeked, int *off, int *err,
+struct sk_buff *__skb_try_recv_datagram(struct sock *sk,
+ struct sk_buff_head *queue,
+ unsigned int flags, int *off, int *err,
struct sk_buff **last);
-struct sk_buff *__skb_recv_datagram(struct sock *sk, unsigned flags,
- void (*destructor)(struct sock *sk,
- struct sk_buff *skb),
- int *peeked, int *off, int *err);
-struct sk_buff *skb_recv_datagram(struct sock *sk, unsigned flags, int noblock,
- int *err);
-unsigned int datagram_poll(struct file *file, struct socket *sock,
+struct sk_buff *__skb_recv_datagram(struct sock *sk,
+ struct sk_buff_head *sk_queue,
+ unsigned int flags, int *off, int *err);
+struct sk_buff *skb_recv_datagram(struct sock *sk, unsigned int flags, int *err);
+__poll_t datagram_poll_queue(struct file *file, struct socket *sock,
+ struct poll_table_struct *wait,
+ struct sk_buff_head *rcv_queue);
+__poll_t datagram_poll(struct file *file, struct socket *sock,
struct poll_table_struct *wait);
int skb_copy_datagram_iter(const struct sk_buff *from, int offset,
struct iov_iter *to, int size);
@@ -3102,24 +4218,27 @@ static inline int skb_copy_datagram_msg(const struct sk_buff *from, int offset,
}
int skb_copy_and_csum_datagram_msg(struct sk_buff *skb, int hlen,
struct msghdr *msg);
+int skb_copy_and_crc32c_datagram_iter(const struct sk_buff *skb, int offset,
+ struct iov_iter *to, int len, u32 *crcp);
int skb_copy_datagram_from_iter(struct sk_buff *skb, int offset,
struct iov_iter *from, int len);
+int skb_copy_datagram_from_iter_full(struct sk_buff *skb, int offset,
+ struct iov_iter *from, int len);
int zerocopy_sg_from_iter(struct sk_buff *skb, struct iov_iter *frm);
void skb_free_datagram(struct sock *sk, struct sk_buff *skb);
-void __skb_free_datagram_locked(struct sock *sk, struct sk_buff *skb, int len);
-static inline void skb_free_datagram_locked(struct sock *sk,
- struct sk_buff *skb)
-{
- __skb_free_datagram_locked(sk, skb, 0);
-}
int skb_kill_datagram(struct sock *sk, struct sk_buff *skb, unsigned int flags);
int skb_copy_bits(const struct sk_buff *skb, int offset, void *to, int len);
int skb_store_bits(struct sk_buff *skb, int offset, const void *from, int len);
__wsum skb_copy_and_csum_bits(const struct sk_buff *skb, int offset, u8 *to,
- int len, __wsum csum);
+ int len);
int skb_splice_bits(struct sk_buff *skb, struct sock *sk, unsigned int offset,
struct pipe_inode_info *pipe, unsigned int len,
unsigned int flags);
+int skb_send_sock_locked(struct sock *sk, struct sk_buff *skb, int offset,
+ int len);
+int skb_send_sock_locked_with_flags(struct sock *sk, struct sk_buff *skb,
+ int offset, int len, int flags);
+int skb_send_sock(struct sock *sk, struct sk_buff *skb, int offset, int len);
void skb_copy_and_csum_dev(const struct sk_buff *skb, u8 *to);
unsigned int skb_zerocopy_headlen(const struct sk_buff *from);
int skb_zerocopy(struct sk_buff *to, struct sk_buff *from,
@@ -3127,14 +4246,24 @@ int skb_zerocopy(struct sk_buff *to, struct sk_buff *from,
void skb_split(struct sk_buff *skb, struct sk_buff *skb1, const u32 len);
int skb_shift(struct sk_buff *tgt, struct sk_buff *skb, int shiftlen);
void skb_scrub_packet(struct sk_buff *skb, bool xnet);
-unsigned int skb_gso_transport_seglen(const struct sk_buff *skb);
-bool skb_gso_validate_mtu(const struct sk_buff *skb, unsigned int mtu);
struct sk_buff *skb_segment(struct sk_buff *skb, netdev_features_t features);
+struct sk_buff *skb_segment_list(struct sk_buff *skb, netdev_features_t features,
+ unsigned int offset);
struct sk_buff *skb_vlan_untag(struct sk_buff *skb);
-int skb_ensure_writable(struct sk_buff *skb, int write_len);
+int skb_ensure_writable(struct sk_buff *skb, unsigned int write_len);
+int skb_ensure_writable_head_tail(struct sk_buff *skb, struct net_device *dev);
int __skb_vlan_pop(struct sk_buff *skb, u16 *vlan_tci);
int skb_vlan_pop(struct sk_buff *skb);
int skb_vlan_push(struct sk_buff *skb, __be16 vlan_proto, u16 vlan_tci);
+int skb_eth_pop(struct sk_buff *skb);
+int skb_eth_push(struct sk_buff *skb, const unsigned char *dst,
+ const unsigned char *src);
+int skb_mpls_push(struct sk_buff *skb, __be32 mpls_lse, __be16 mpls_proto,
+ int mac_len, bool ethernet);
+int skb_mpls_pop(struct sk_buff *skb, __be16 next_proto, int mac_len,
+ bool ethernet);
+int skb_mpls_update_lse(struct sk_buff *skb, __be32 mpls_lse);
+int skb_mpls_dec_ttl(struct sk_buff *skb);
struct sk_buff *pskb_extract(struct sk_buff *skb, int off, int to_copy,
gfp_t gfp);
@@ -3148,27 +4277,18 @@ static inline int memcpy_to_msg(struct msghdr *msg, void *data, int len)
return copy_to_iter(data, len, &msg->msg_iter) == len ? 0 : -EFAULT;
}
-struct skb_checksum_ops {
- __wsum (*update)(const void *mem, int len, __wsum wsum);
- __wsum (*combine)(__wsum csum, __wsum csum2, int offset, int len);
-};
-
-extern const struct skb_checksum_ops *crc32c_csum_stub __read_mostly;
-
-__wsum __skb_checksum(const struct sk_buff *skb, int offset, int len,
- __wsum csum, const struct skb_checksum_ops *ops);
__wsum skb_checksum(const struct sk_buff *skb, int offset, int len,
__wsum csum);
+u32 skb_crc32c(const struct sk_buff *skb, int offset, int len, u32 crc);
static inline void * __must_check
-__skb_header_pointer(const struct sk_buff *skb, int offset,
- int len, void *data, int hlen, void *buffer)
+__skb_header_pointer(const struct sk_buff *skb, int offset, int len,
+ const void *data, int hlen, void *buffer)
{
- if (hlen - offset >= len)
- return data + offset;
+ if (likely(hlen - offset >= len))
+ return (void *)data + offset;
- if (!skb ||
- skb_copy_bits(skb, offset, buffer, len) < 0)
+ if (!skb || unlikely(skb_copy_bits(skb, offset, buffer, len) < 0))
return NULL;
return buffer;
@@ -3181,6 +4301,14 @@ skb_header_pointer(const struct sk_buff *skb, int offset, int len, void *buffer)
skb_headlen(skb), buffer);
}
+static inline void * __must_check
+skb_pointer_if_linear(const struct sk_buff *skb, int offset, int len)
+{
+ if (likely(skb_headlen(skb) - offset >= len))
+ return skb->data + offset;
+ return NULL;
+}
+
/**
* skb_needs_linearize - check if we need to linearize a given skb
* depending on the given device features.
@@ -3238,27 +4366,49 @@ static inline ktime_t skb_get_ktime(const struct sk_buff *skb)
/**
* skb_get_timestamp - get timestamp from a skb
* @skb: skb to get stamp from
- * @stamp: pointer to struct timeval to store stamp in
+ * @stamp: pointer to struct __kernel_old_timeval to store stamp in
*
* Timestamps are stored in the skb as offsets to a base timestamp.
* This function converts the offset back to a struct timeval and stores
* it in stamp.
*/
static inline void skb_get_timestamp(const struct sk_buff *skb,
- struct timeval *stamp)
+ struct __kernel_old_timeval *stamp)
{
- *stamp = ktime_to_timeval(skb->tstamp);
+ *stamp = ns_to_kernel_old_timeval(skb->tstamp);
+}
+
+static inline void skb_get_new_timestamp(const struct sk_buff *skb,
+ struct __kernel_sock_timeval *stamp)
+{
+ struct timespec64 ts = ktime_to_timespec64(skb->tstamp);
+
+ stamp->tv_sec = ts.tv_sec;
+ stamp->tv_usec = ts.tv_nsec / 1000;
}
static inline void skb_get_timestampns(const struct sk_buff *skb,
- struct timespec *stamp)
+ struct __kernel_old_timespec *stamp)
{
- *stamp = ktime_to_timespec(skb->tstamp);
+ struct timespec64 ts = ktime_to_timespec64(skb->tstamp);
+
+ stamp->tv_sec = ts.tv_sec;
+ stamp->tv_nsec = ts.tv_nsec;
+}
+
+static inline void skb_get_new_timestampns(const struct sk_buff *skb,
+ struct __kernel_timespec *stamp)
+{
+ struct timespec64 ts = ktime_to_timespec64(skb->tstamp);
+
+ stamp->tv_sec = ts.tv_sec;
+ stamp->tv_nsec = ts.tv_nsec;
}
static inline void __net_timestamp(struct sk_buff *skb)
{
skb->tstamp = ktime_get_real();
+ skb->tstamp_type = SKB_CLOCK_REALTIME;
}
static inline ktime_t net_timedelta(ktime_t t)
@@ -3266,11 +4416,229 @@ static inline ktime_t net_timedelta(ktime_t t)
return ktime_sub(ktime_get_real(), t);
}
-static inline ktime_t net_invalid_timestamp(void)
+static inline void skb_set_delivery_time(struct sk_buff *skb, ktime_t kt,
+ u8 tstamp_type)
+{
+ skb->tstamp = kt;
+
+ if (kt)
+ skb->tstamp_type = tstamp_type;
+ else
+ skb->tstamp_type = SKB_CLOCK_REALTIME;
+}
+
+static inline void skb_set_delivery_type_by_clockid(struct sk_buff *skb,
+ ktime_t kt, clockid_t clockid)
+{
+ u8 tstamp_type = SKB_CLOCK_REALTIME;
+
+ switch (clockid) {
+ case CLOCK_REALTIME:
+ break;
+ case CLOCK_MONOTONIC:
+ tstamp_type = SKB_CLOCK_MONOTONIC;
+ break;
+ case CLOCK_TAI:
+ tstamp_type = SKB_CLOCK_TAI;
+ break;
+ default:
+ WARN_ON_ONCE(1);
+ kt = 0;
+ }
+
+ skb_set_delivery_time(skb, kt, tstamp_type);
+}
+
+DECLARE_STATIC_KEY_FALSE(netstamp_needed_key);
+
+/* It is used in the ingress path to clear the delivery_time.
+ * If needed, set the skb->tstamp to the (rcv) timestamp.
+ */
+static inline void skb_clear_delivery_time(struct sk_buff *skb)
+{
+ if (skb->tstamp_type) {
+ skb->tstamp_type = SKB_CLOCK_REALTIME;
+ if (static_branch_unlikely(&netstamp_needed_key))
+ skb->tstamp = ktime_get_real();
+ else
+ skb->tstamp = 0;
+ }
+}
+
+static inline void skb_clear_tstamp(struct sk_buff *skb)
{
+ if (skb->tstamp_type)
+ return;
+
+ skb->tstamp = 0;
+}
+
+static inline ktime_t skb_tstamp(const struct sk_buff *skb)
+{
+ if (skb->tstamp_type)
+ return 0;
+
+ return skb->tstamp;
+}
+
+static inline ktime_t skb_tstamp_cond(const struct sk_buff *skb, bool cond)
+{
+ if (skb->tstamp_type != SKB_CLOCK_MONOTONIC && skb->tstamp)
+ return skb->tstamp;
+
+ if (static_branch_unlikely(&netstamp_needed_key) || cond)
+ return ktime_get_real();
+
return 0;
}
+static inline u8 skb_metadata_len(const struct sk_buff *skb)
+{
+ return skb_shinfo(skb)->meta_len;
+}
+
+static inline void *skb_metadata_end(const struct sk_buff *skb)
+{
+ return skb_mac_header(skb);
+}
+
+static inline bool __skb_metadata_differs(const struct sk_buff *skb_a,
+ const struct sk_buff *skb_b,
+ u8 meta_len)
+{
+ const void *a = skb_metadata_end(skb_a);
+ const void *b = skb_metadata_end(skb_b);
+ u64 diffs = 0;
+
+ if (!IS_ENABLED(CONFIG_HAVE_EFFICIENT_UNALIGNED_ACCESS) ||
+ BITS_PER_LONG != 64)
+ goto slow;
+
+ /* Using more efficient variant than plain call to memcmp(). */
+ switch (meta_len) {
+#define __it(x, op) (x -= sizeof(u##op))
+#define __it_diff(a, b, op) (*(u##op *)__it(a, op)) ^ (*(u##op *)__it(b, op))
+ case 32: diffs |= __it_diff(a, b, 64);
+ fallthrough;
+ case 24: diffs |= __it_diff(a, b, 64);
+ fallthrough;
+ case 16: diffs |= __it_diff(a, b, 64);
+ fallthrough;
+ case 8: diffs |= __it_diff(a, b, 64);
+ break;
+ case 28: diffs |= __it_diff(a, b, 64);
+ fallthrough;
+ case 20: diffs |= __it_diff(a, b, 64);
+ fallthrough;
+ case 12: diffs |= __it_diff(a, b, 64);
+ fallthrough;
+ case 4: diffs |= __it_diff(a, b, 32);
+ break;
+ default:
+slow:
+ return memcmp(a - meta_len, b - meta_len, meta_len);
+ }
+ return diffs;
+}
+
+static inline bool skb_metadata_differs(const struct sk_buff *skb_a,
+ const struct sk_buff *skb_b)
+{
+ u8 len_a = skb_metadata_len(skb_a);
+ u8 len_b = skb_metadata_len(skb_b);
+
+ if (!(len_a | len_b))
+ return false;
+
+ return len_a != len_b ?
+ true : __skb_metadata_differs(skb_a, skb_b, len_a);
+}
+
+static inline void skb_metadata_set(struct sk_buff *skb, u8 meta_len)
+{
+ skb_shinfo(skb)->meta_len = meta_len;
+}
+
+static inline void skb_metadata_clear(struct sk_buff *skb)
+{
+ skb_metadata_set(skb, 0);
+}
+
+/**
+ * skb_data_move - Move packet data and metadata after skb_push() or skb_pull().
+ * @skb: packet to operate on
+ * @len: number of bytes pushed or pulled from &sk_buff->data
+ * @n: number of bytes to memmove() from pre-push/pull &sk_buff->data
+ *
+ * Moves @n bytes of packet data, can be zero, and all bytes of skb metadata.
+ *
+ * Assumes metadata is located immediately before &sk_buff->data prior to the
+ * push/pull, and that sufficient headroom exists to hold it after an
+ * skb_push(). Otherwise, metadata is cleared and a one-time warning is issued.
+ *
+ * Prefer skb_postpull_data_move() or skb_postpush_data_move() to calling this
+ * helper directly.
+ */
+static inline void skb_data_move(struct sk_buff *skb, const int len,
+ const unsigned int n)
+{
+ const u8 meta_len = skb_metadata_len(skb);
+ u8 *meta, *meta_end;
+
+ if (!len || (!n && !meta_len))
+ return;
+
+ if (!meta_len)
+ goto no_metadata;
+
+ meta_end = skb_metadata_end(skb);
+ meta = meta_end - meta_len;
+
+ if (WARN_ON_ONCE(meta_end + len != skb->data ||
+ meta_len > skb_headroom(skb))) {
+ skb_metadata_clear(skb);
+ goto no_metadata;
+ }
+
+ memmove(meta + len, meta, meta_len + n);
+ return;
+
+no_metadata:
+ memmove(skb->data, skb->data - len, n);
+}
+
+/**
+ * skb_postpull_data_move - Move packet data and metadata after skb_pull().
+ * @skb: packet to operate on
+ * @len: number of bytes pulled from &sk_buff->data
+ * @n: number of bytes to memmove() from pre-pull &sk_buff->data
+ *
+ * See skb_data_move() for details.
+ */
+static inline void skb_postpull_data_move(struct sk_buff *skb,
+ const unsigned int len,
+ const unsigned int n)
+{
+ DEBUG_NET_WARN_ON_ONCE(len > INT_MAX);
+ skb_data_move(skb, len, n);
+}
+
+/**
+ * skb_postpush_data_move - Move packet data and metadata after skb_push().
+ * @skb: packet to operate on
+ * @len: number of bytes pushed onto &sk_buff->data
+ * @n: number of bytes to memmove() from pre-push &sk_buff->data
+ *
+ * See skb_data_move() for details.
+ */
+static inline void skb_postpush_data_move(struct sk_buff *skb,
+ const unsigned int len,
+ const unsigned int n)
+{
+ DEBUG_NET_WARN_ON_ONCE(len > INT_MAX);
+ skb_data_move(skb, -len, n);
+}
+
struct sk_buff *skb_clone_sk(struct sk_buff *skb);
#ifdef CONFIG_NETWORK_PHY_TIMESTAMPING
@@ -3299,14 +4667,14 @@ static inline bool skb_defer_rx_timestamp(struct sk_buff *skb)
* must call this function to return the skb back to the stack with a
* timestamp.
*
- * @skb: clone of the the original outgoing packet
+ * @skb: clone of the original outgoing packet
* @hwtstamps: hardware time stamps
*
*/
void skb_complete_tx_timestamp(struct sk_buff *skb,
struct skb_shared_hwtstamps *hwtstamps);
-void __skb_tstamp_tx(struct sk_buff *orig_skb,
+void __skb_tstamp_tx(struct sk_buff *orig_skb, const struct sk_buff *ack_skb,
struct skb_shared_hwtstamps *hwtstamps,
struct sock *sk, int tstype);
@@ -3339,7 +4707,7 @@ void skb_tstamp_tx(struct sk_buff *orig_skb,
static inline void skb_tx_timestamp(struct sk_buff *skb)
{
skb_clone_tx_timestamp(skb);
- if (skb_shinfo(skb)->tx_flags & SKBTX_SW_TSTAMP)
+ if (skb_shinfo(skb)->tx_flags & (SKBTX_SW_TSTAMP | SKBTX_BPF))
skb_tstamp_tx(skb, NULL);
}
@@ -3406,9 +4774,17 @@ static inline void __skb_incr_checksum_unnecessary(struct sk_buff *skb)
}
}
+static inline void __skb_reset_checksum_unnecessary(struct sk_buff *skb)
+{
+ if (skb->ip_summed == CHECKSUM_UNNECESSARY) {
+ skb->ip_summed = CHECKSUM_NONE;
+ skb->csum_level = 0;
+ }
+}
+
/* Check if we need to perform checksum complete validation.
*
- * Returns true if checksum complete is needed, false otherwise
+ * Returns: true if checksum complete is needed, false otherwise
* (either checksum is unnecessary or zero checksum is allowed).
*/
static inline bool __skb_checksum_validate_needed(struct sk_buff *skb,
@@ -3424,7 +4800,7 @@ static inline bool __skb_checksum_validate_needed(struct sk_buff *skb,
return true;
}
-/* For small packets <= CHECKSUM_BREAK peform checksum complete directly
+/* For small packets <= CHECKSUM_BREAK perform checksum complete directly
* in checksum_init.
*/
#define CHECKSUM_BREAK 76
@@ -3521,18 +4897,16 @@ static inline bool __skb_checksum_convert_check(struct sk_buff *skb)
return (skb->ip_summed == CHECKSUM_NONE && skb->csum_valid);
}
-static inline void __skb_checksum_convert(struct sk_buff *skb,
- __sum16 check, __wsum pseudo)
+static inline void __skb_checksum_convert(struct sk_buff *skb, __wsum pseudo)
{
skb->csum = ~pseudo;
skb->ip_summed = CHECKSUM_COMPLETE;
}
-#define skb_checksum_try_convert(skb, proto, check, compute_pseudo) \
+#define skb_checksum_try_convert(skb, proto, compute_pseudo) \
do { \
if (__skb_checksum_convert_check(skb)) \
- __skb_checksum_convert(skb, check, \
- compute_pseudo(skb, proto)); \
+ __skb_checksum_convert(skb, compute_pseudo(skb, proto)); \
} while (0)
static inline void skb_remcsum_adjust_partial(struct sk_buff *skb, void *ptr,
@@ -3558,7 +4932,7 @@ static inline void skb_remcsum_process(struct sk_buff *skb, void *ptr,
return;
}
- if (unlikely(skb->ip_summed != CHECKSUM_COMPLETE)) {
+ if (unlikely(skb->ip_summed != CHECKSUM_COMPLETE)) {
__skb_checksum_complete(skb);
skb_postpull_rcsum(skb, skb->data, ptr - (void *)skb->data);
}
@@ -3572,57 +4946,172 @@ static inline void skb_remcsum_process(struct sk_buff *skb, void *ptr,
static inline struct nf_conntrack *skb_nfct(const struct sk_buff *skb)
{
#if IS_ENABLED(CONFIG_NF_CONNTRACK)
- return (void *)(skb->_nfct & SKB_NFCT_PTRMASK);
+ return (void *)(skb->_nfct & NFCT_PTRMASK);
#else
return NULL;
#endif
}
-#if defined(CONFIG_NF_CONNTRACK) || defined(CONFIG_NF_CONNTRACK_MODULE)
-void nf_conntrack_destroy(struct nf_conntrack *nfct);
-static inline void nf_conntrack_put(struct nf_conntrack *nfct)
+static inline unsigned long skb_get_nfct(const struct sk_buff *skb)
{
- if (nfct && atomic_dec_and_test(&nfct->use))
- nf_conntrack_destroy(nfct);
+#if IS_ENABLED(CONFIG_NF_CONNTRACK)
+ return skb->_nfct;
+#else
+ return 0UL;
+#endif
}
-static inline void nf_conntrack_get(struct nf_conntrack *nfct)
+
+static inline void skb_set_nfct(struct sk_buff *skb, unsigned long nfct)
{
- if (nfct)
- atomic_inc(&nfct->use);
-}
+#if IS_ENABLED(CONFIG_NF_CONNTRACK)
+ skb->slow_gro |= !!nfct;
+ skb->_nfct = nfct;
#endif
+}
+
+#ifdef CONFIG_SKB_EXTENSIONS
+enum skb_ext_id {
#if IS_ENABLED(CONFIG_BRIDGE_NETFILTER)
-static inline void nf_bridge_put(struct nf_bridge_info *nf_bridge)
+ SKB_EXT_BRIDGE_NF,
+#endif
+#ifdef CONFIG_XFRM
+ SKB_EXT_SEC_PATH,
+#endif
+#if IS_ENABLED(CONFIG_NET_TC_SKB_EXT)
+ TC_SKB_EXT,
+#endif
+#if IS_ENABLED(CONFIG_MPTCP)
+ SKB_EXT_MPTCP,
+#endif
+#if IS_ENABLED(CONFIG_MCTP_FLOWS)
+ SKB_EXT_MCTP,
+#endif
+#if IS_ENABLED(CONFIG_INET_PSP)
+ SKB_EXT_PSP,
+#endif
+ SKB_EXT_NUM, /* must be last */
+};
+
+/**
+ * struct skb_ext - sk_buff extensions
+ * @refcnt: 1 on allocation, deallocated on 0
+ * @offset: offset to add to @data to obtain extension address
+ * @chunks: size currently allocated, stored in SKB_EXT_ALIGN_SHIFT units
+ * @data: start of extension data, variable sized
+ *
+ * Note: offsets/lengths are stored in chunks of 8 bytes, this allows
+ * to use 'u8' types while allowing up to 2kb worth of extension data.
+ */
+struct skb_ext {
+ refcount_t refcnt;
+ u8 offset[SKB_EXT_NUM]; /* in chunks of 8 bytes */
+ u8 chunks; /* same */
+ char data[] __aligned(8);
+};
+
+struct skb_ext *__skb_ext_alloc(gfp_t flags);
+void *__skb_ext_set(struct sk_buff *skb, enum skb_ext_id id,
+ struct skb_ext *ext);
+void *skb_ext_add(struct sk_buff *skb, enum skb_ext_id id);
+void __skb_ext_del(struct sk_buff *skb, enum skb_ext_id id);
+void __skb_ext_put(struct skb_ext *ext);
+
+static inline void skb_ext_put(struct sk_buff *skb)
{
- if (nf_bridge && refcount_dec_and_test(&nf_bridge->use))
- kfree(nf_bridge);
+ if (skb->active_extensions)
+ __skb_ext_put(skb->extensions);
}
-static inline void nf_bridge_get(struct nf_bridge_info *nf_bridge)
+
+static inline void __skb_ext_copy(struct sk_buff *dst,
+ const struct sk_buff *src)
{
- if (nf_bridge)
- refcount_inc(&nf_bridge->use);
+ dst->active_extensions = src->active_extensions;
+
+ if (src->active_extensions) {
+ struct skb_ext *ext = src->extensions;
+
+ refcount_inc(&ext->refcnt);
+ dst->extensions = ext;
+ }
}
-#endif /* CONFIG_BRIDGE_NETFILTER */
-static inline void nf_reset(struct sk_buff *skb)
+
+static inline void skb_ext_copy(struct sk_buff *dst, const struct sk_buff *src)
+{
+ skb_ext_put(dst);
+ __skb_ext_copy(dst, src);
+}
+
+static inline bool __skb_ext_exist(const struct skb_ext *ext, enum skb_ext_id i)
+{
+ return !!ext->offset[i];
+}
+
+static inline bool skb_ext_exist(const struct sk_buff *skb, enum skb_ext_id id)
+{
+ return skb->active_extensions & (1 << id);
+}
+
+static inline void skb_ext_del(struct sk_buff *skb, enum skb_ext_id id)
+{
+ if (skb_ext_exist(skb, id))
+ __skb_ext_del(skb, id);
+}
+
+static inline void *skb_ext_find(const struct sk_buff *skb, enum skb_ext_id id)
+{
+ if (skb_ext_exist(skb, id)) {
+ struct skb_ext *ext = skb->extensions;
+
+ return (void *)ext + (ext->offset[id] << 3);
+ }
+
+ return NULL;
+}
+
+static inline void skb_ext_reset(struct sk_buff *skb)
+{
+ if (unlikely(skb->active_extensions)) {
+ __skb_ext_put(skb->extensions);
+ skb->active_extensions = 0;
+ }
+}
+
+static inline bool skb_has_extensions(struct sk_buff *skb)
+{
+ return unlikely(skb->active_extensions);
+}
+#else
+static inline void skb_ext_put(struct sk_buff *skb) {}
+static inline void skb_ext_reset(struct sk_buff *skb) {}
+static inline void skb_ext_del(struct sk_buff *skb, int unused) {}
+static inline void __skb_ext_copy(struct sk_buff *d, const struct sk_buff *s) {}
+static inline void skb_ext_copy(struct sk_buff *dst, const struct sk_buff *s) {}
+static inline bool skb_has_extensions(struct sk_buff *skb) { return false; }
+#endif /* CONFIG_SKB_EXTENSIONS */
+
+static inline void nf_reset_ct(struct sk_buff *skb)
{
#if defined(CONFIG_NF_CONNTRACK) || defined(CONFIG_NF_CONNTRACK_MODULE)
nf_conntrack_put(skb_nfct(skb));
skb->_nfct = 0;
#endif
-#if IS_ENABLED(CONFIG_BRIDGE_NETFILTER)
- nf_bridge_put(skb->nf_bridge);
- skb->nf_bridge = NULL;
-#endif
}
static inline void nf_reset_trace(struct sk_buff *skb)
{
-#if IS_ENABLED(CONFIG_NETFILTER_XT_TARGET_TRACE) || defined(CONFIG_NF_TABLES)
+#if IS_ENABLED(CONFIG_NETFILTER_XT_TARGET_TRACE) || IS_ENABLED(CONFIG_NF_TABLES)
skb->nf_trace = 0;
#endif
}
-/* Note: This doesn't put any conntrack and bridge info in dst. */
+static inline void ipvs_reset(struct sk_buff *skb)
+{
+#if IS_ENABLED(CONFIG_IP_VS)
+ skb->ipvs_property = 0;
+#endif
+}
+
+/* Note: This doesn't put any conntrack info in dst. */
static inline void __nf_copy(struct sk_buff *dst, const struct sk_buff *src,
bool copy)
{
@@ -3630,11 +5119,7 @@ static inline void __nf_copy(struct sk_buff *dst, const struct sk_buff *src,
dst->_nfct = src->_nfct;
nf_conntrack_get(skb_nfct(src));
#endif
-#if IS_ENABLED(CONFIG_BRIDGE_NETFILTER)
- dst->nf_bridge = src->nf_bridge;
- nf_bridge_get(src->nf_bridge);
-#endif
-#if IS_ENABLED(CONFIG_NETFILTER_XT_TARGET_TRACE) || defined(CONFIG_NF_TABLES)
+#if IS_ENABLED(CONFIG_NETFILTER_XT_TARGET_TRACE) || IS_ENABLED(CONFIG_NF_TABLES)
if (copy)
dst->nf_trace = src->nf_trace;
#endif
@@ -3645,9 +5130,7 @@ static inline void nf_copy(struct sk_buff *dst, const struct sk_buff *src)
#if defined(CONFIG_NF_CONNTRACK) || defined(CONFIG_NF_CONNTRACK_MODULE)
nf_conntrack_put(skb_nfct(dst));
#endif
-#if IS_ENABLED(CONFIG_BRIDGE_NETFILTER)
- nf_bridge_put(dst->nf_bridge);
-#endif
+ dst->slow_gro = src->slow_gro;
__nf_copy(dst, src, true);
}
@@ -3669,12 +5152,19 @@ static inline void skb_init_secmark(struct sk_buff *skb)
{ }
#endif
+static inline int secpath_exists(const struct sk_buff *skb)
+{
+#ifdef CONFIG_XFRM
+ return skb_ext_exist(skb, SKB_EXT_SEC_PATH);
+#else
+ return 0;
+#endif
+}
+
static inline bool skb_irq_freeable(const struct sk_buff *skb)
{
return !skb->destructor &&
-#if IS_ENABLED(CONFIG_XFRM)
- !skb->sp &&
-#endif
+ !secpath_exists(skb) &&
!skb_nfct(skb) &&
!skb->_skb_refdst &&
!skb_has_frag_list(skb);
@@ -3720,100 +5210,59 @@ static inline bool skb_get_dst_pending_confirm(const struct sk_buff *skb)
return skb->dst_pending_confirm != 0;
}
-static inline struct sec_path *skb_sec_path(struct sk_buff *skb)
+static inline struct sec_path *skb_sec_path(const struct sk_buff *skb)
{
#ifdef CONFIG_XFRM
- return skb->sp;
+ return skb_ext_find(skb, SKB_EXT_SEC_PATH);
#else
return NULL;
#endif
}
-/* Keeps track of mac header offset relative to skb->head.
- * It is useful for TSO of Tunneling protocol. e.g. GRE.
- * For non-tunnel skb it points to skb_mac_header() and for
- * tunnel skb it points to outer mac header.
- * Keeps track of level of encapsulation of network headers.
- */
-struct skb_gso_cb {
- union {
- int mac_offset;
- int data_offset;
- };
- int encap_level;
- __wsum csum;
- __u16 csum_start;
-};
-#define SKB_SGO_CB_OFFSET 32
-#define SKB_GSO_CB(skb) ((struct skb_gso_cb *)((skb)->cb + SKB_SGO_CB_OFFSET))
-
-static inline int skb_tnl_header_len(const struct sk_buff *inner_skb)
+static inline bool skb_is_gso(const struct sk_buff *skb)
{
- return (skb_mac_header(inner_skb) - inner_skb->head) -
- SKB_GSO_CB(inner_skb)->mac_offset;
+ return skb_shinfo(skb)->gso_size;
}
-static inline int gso_pskb_expand_head(struct sk_buff *skb, int extra)
+/* Note: Should be called only if skb_is_gso(skb) is true */
+static inline bool skb_is_gso_v6(const struct sk_buff *skb)
{
- int new_headroom, headroom;
- int ret;
-
- headroom = skb_headroom(skb);
- ret = pskb_expand_head(skb, extra, 0, GFP_ATOMIC);
- if (ret)
- return ret;
-
- new_headroom = skb_headroom(skb);
- SKB_GSO_CB(skb)->mac_offset += (new_headroom - headroom);
- return 0;
+ return skb_shinfo(skb)->gso_type & SKB_GSO_TCPV6;
}
-static inline void gso_reset_checksum(struct sk_buff *skb, __wsum res)
+/* Note: Should be called only if skb_is_gso(skb) is true */
+static inline bool skb_is_gso_sctp(const struct sk_buff *skb)
{
- /* Do not update partial checksums if remote checksum is enabled. */
- if (skb->remcsum_offload)
- return;
-
- SKB_GSO_CB(skb)->csum = res;
- SKB_GSO_CB(skb)->csum_start = skb_checksum_start(skb) - skb->head;
+ return skb_shinfo(skb)->gso_type & SKB_GSO_SCTP;
}
-/* Compute the checksum for a gso segment. First compute the checksum value
- * from the start of transport header to SKB_GSO_CB(skb)->csum_start, and
- * then add in skb->csum (checksum from csum_start to end of packet).
- * skb->csum and csum_start are then updated to reflect the checksum of the
- * resultant packet starting from the transport header-- the resultant checksum
- * is in the res argument (i.e. normally zero or ~ of checksum of a pseudo
- * header.
- */
-static inline __sum16 gso_make_checksum(struct sk_buff *skb, __wsum res)
+/* Note: Should be called only if skb_is_gso(skb) is true */
+static inline bool skb_is_gso_tcp(const struct sk_buff *skb)
{
- unsigned char *csum_start = skb_transport_header(skb);
- int plen = (skb->head + SKB_GSO_CB(skb)->csum_start) - csum_start;
- __wsum partial = SKB_GSO_CB(skb)->csum;
-
- SKB_GSO_CB(skb)->csum = res;
- SKB_GSO_CB(skb)->csum_start = csum_start - skb->head;
-
- return csum_fold(csum_partial(csum_start, plen, partial));
+ return skb_shinfo(skb)->gso_type & (SKB_GSO_TCPV4 | SKB_GSO_TCPV6);
}
-static inline bool skb_is_gso(const struct sk_buff *skb)
+static inline void skb_gso_reset(struct sk_buff *skb)
{
- return skb_shinfo(skb)->gso_size;
+ skb_shinfo(skb)->gso_size = 0;
+ skb_shinfo(skb)->gso_segs = 0;
+ skb_shinfo(skb)->gso_type = 0;
}
-/* Note: Should be called only if skb_is_gso(skb) is true */
-static inline bool skb_is_gso_v6(const struct sk_buff *skb)
+static inline void skb_increase_gso_size(struct skb_shared_info *shinfo,
+ u16 increment)
{
- return skb_shinfo(skb)->gso_type & SKB_GSO_TCPV6;
+ if (WARN_ON_ONCE(shinfo->gso_size == GSO_BY_FRAGS))
+ return;
+ shinfo->gso_size += increment;
}
-static inline void skb_gso_reset(struct sk_buff *skb)
+static inline void skb_decrease_gso_size(struct skb_shared_info *shinfo,
+ u16 decrement)
{
- skb_shinfo(skb)->gso_size = 0;
- skb_shinfo(skb)->gso_segs = 0;
- skb_shinfo(skb)->gso_type = 0;
+ if (WARN_ON_ONCE(shinfo->gso_size == GSO_BY_FRAGS))
+ return;
+ shinfo->gso_size -= decrement;
}
void __skb_warn_lro_forwarding(const struct sk_buff *skb);
@@ -3849,9 +5298,7 @@ static inline void skb_forward_csum(struct sk_buff *skb)
*/
static inline void skb_checksum_none_assert(const struct sk_buff *skb)
{
-#ifdef DEBUG
- BUG_ON(skb->ip_summed != CHECKSUM_NONE);
-#endif
+ DEBUG_NET_WARN_ON_ONCE(skb->ip_summed != CHECKSUM_NONE);
}
bool skb_partial_csum_set(struct sk_buff *skb, u16 start, u16 off);
@@ -3875,27 +5322,10 @@ static inline bool skb_head_is_locked(const struct sk_buff *skb)
return !skb->head_frag || skb_cloned(skb);
}
-/**
- * skb_gso_network_seglen - Return length of individual segments of a gso packet
- *
- * @skb: GSO skb
- *
- * skb_gso_network_seglen is used to determine the real size of the
- * individual segments, including Layer3 (IP, IPv6) and L4 headers (TCP/UDP).
- *
- * The MAC/L2 header is not accounted for.
- */
-static inline unsigned int skb_gso_network_seglen(const struct sk_buff *skb)
-{
- unsigned int hdr_len = skb_transport_header(skb) -
- skb_network_header(skb);
- return hdr_len + skb_gso_transport_seglen(skb);
-}
-
/* Local Checksum Offload.
* Compute outer checksum based on the assumption that the
* inner checksum will be offloaded later.
- * See Documentation/networking/checksum-offloads.txt for
+ * See Documentation/networking/checksum-offloads.rst for
* explanation of how this works.
* Fill in outer checksum adjustment (e.g. with sum of outer
* pseudo-header) before calling.
@@ -3917,5 +5347,78 @@ static inline __wsum lco_csum(struct sk_buff *skb)
return csum_partial(l4_hdr, csum_start - l4_hdr, partial);
}
+static inline bool skb_is_redirected(const struct sk_buff *skb)
+{
+ return skb->redirected;
+}
+
+static inline void skb_set_redirected(struct sk_buff *skb, bool from_ingress)
+{
+ skb->redirected = 1;
+#ifdef CONFIG_NET_REDIRECT
+ skb->from_ingress = from_ingress;
+ if (skb->from_ingress)
+ skb_clear_tstamp(skb);
+#endif
+}
+
+static inline void skb_reset_redirect(struct sk_buff *skb)
+{
+ skb->redirected = 0;
+}
+
+static inline void skb_set_redirected_noclear(struct sk_buff *skb,
+ bool from_ingress)
+{
+ skb->redirected = 1;
+#ifdef CONFIG_NET_REDIRECT
+ skb->from_ingress = from_ingress;
+#endif
+}
+
+static inline bool skb_csum_is_sctp(struct sk_buff *skb)
+{
+#if IS_ENABLED(CONFIG_IP_SCTP)
+ return skb->csum_not_inet;
+#else
+ return 0;
+#endif
+}
+
+static inline void skb_reset_csum_not_inet(struct sk_buff *skb)
+{
+ skb->ip_summed = CHECKSUM_NONE;
+#if IS_ENABLED(CONFIG_IP_SCTP)
+ skb->csum_not_inet = 0;
+#endif
+}
+
+static inline void skb_set_kcov_handle(struct sk_buff *skb,
+ const u64 kcov_handle)
+{
+#ifdef CONFIG_KCOV
+ skb->kcov_handle = kcov_handle;
+#endif
+}
+
+static inline u64 skb_get_kcov_handle(struct sk_buff *skb)
+{
+#ifdef CONFIG_KCOV
+ return skb->kcov_handle;
+#else
+ return 0;
+#endif
+}
+
+static inline void skb_mark_for_recycle(struct sk_buff *skb)
+{
+#ifdef CONFIG_PAGE_POOL
+ skb->pp_recycle = 1;
+#endif
+}
+
+ssize_t skb_splice_from_iter(struct sk_buff *skb, struct iov_iter *iter,
+ ssize_t maxsize);
+
#endif /* __KERNEL__ */
#endif /* _LINUX_SKBUFF_H */