linux/net/core/skbuff.c
Greg Kroah-Hartman 131b12d50f Merge tag 'android12-5.10.110_r01' into android12-5.10
This is the merge of the upstream LTS release of 5.4.110 into the
android12-5.10 branch.

It contains the following commits:

e08dd85cc9 ANDROID: fix up abi issue with struct snd_pcm_runtime, again
8f4bd2a63f Revert "coredump: Snapshot the vmas in do_coredump"
b7dbb1ee1f Revert "coredump: Remove the WARN_ON in dump_vma_snapshot"
5f24894332 Revert "coredump: Use the vma snapshot in fill_files_note"
c4eb663fca Revert "pstore: Don't use semaphores in always-atomic-context code"
562c3bd65c Revert "PCI: Reduce warnings on possible RW1C corruption"
0038e1f40c ANDROID: GKI: fix crc issue with commit ce1927b8cf ("block: don't merge across cgroup boundaries if blkcg is enabled")
62fa3399b4 ANDROID: remove CONFIG_HW_RANDOM_CAVIUM from arm64 gki_defconfig
95f4203fc9 Merge 5.10.110 into android12-5.10-lts
3238bffaf9 Linux 5.10.110
cf342cbfb3 PCI: xgene: Revert "PCI: xgene: Use inbound resources for setup"
a25864c5bc arm64: Do not defer reserve_crashkernel() for platforms with no DMA memory zones
558564db44 coredump: Use the vma snapshot in fill_files_note
b7933f145a coredump/elf: Pass coredump_params into fill_note_info
b043ae637a coredump: Remove the WARN_ON in dump_vma_snapshot
936c8be4d1 coredump: Snapshot the vmas in do_coredump
5318cdf4fd can: usb_8dev: usb_8dev_start_xmit(): fix double dev_kfree_skb() in error path
869016a293 can: m_can: m_can_tx_handler(): fix use after free of skb
e90518d10c KVM: x86/mmu: do compare-and-exchange of gPTE via the user address
e36c45263a openvswitch: Fixed nd target mask field in the flow dump.
415edc68b6 docs: sysctl/kernel: add missing bit to panic_print
272c74323d um: Fix uml_mconsole stop/go
c0a6a54738 ARM: dts: spear13xx: Update SPI dma properties
ea3912af8b ARM: dts: spear1340: Update serial node properties
74f7971985 ASoC: topology: Allow TLV control to be either read or write
3ca47556d9 ubi: fastmap: Return error code if memory allocation fails in add_aeb()
7704f243cb dt-bindings: spi: mxic: The interrupt property is not mandatory
648ab1dcc1 dt-bindings: mtd: nand-controller: Fix a comment in the examples
71917e45e1 dt-bindings: mtd: nand-controller: Fix the reg property description
73f2f37417 bpf: Fix comment for helper bpf_current_task_under_cgroup()
90805175a2 bpf: Adjust BPF stack helper functions to accommodate skip > 0
86489492e8 mm/usercopy: return 1 from hardened_usercopy __setup() handler
81a04b9a32 mm/memcontrol: return 1 from cgroup.memory __setup() handler
f321621f5c ARM: 9187/1: JIVE: fix return value of __setup handler
d57feed3b1 mm/mmap: return 1 from stack_guard_gap __setup() handler
73f7cbb151 batman-adv: Check ptr for NULL before reducing its refcnt
f6da750bfa ASoC: soc-compress: Change the check for codec_dai
d3f786b7cf staging: mt7621-dts: fix pinctrl-0 items to be size-1 items on ethernet
12e380bb6f proc: bootconfig: Add null pointer check
90ec1b1538 can: isotp: restore accidentally removed MSG_PEEK feature
16960ac92b platform/chrome: cros_ec_typec: Check for EC device
e5b681822c ACPI: CPPC: Avoid out of bounds access when parsing _CPC data
785a53373c riscv module: remove (NOLOAD)
b27de7011c io_uring: fix memory leak of uid in files registration
20499ed3c0 ARM: iop32x: offset IRQ numbers by 1
432b057f8e ubi: Fix race condition between ctrl_cdev_ioctl and ubi_cdev_ioctl
f28a857a61 ASoC: mediatek: mt6358: add missing EXPORT_SYMBOLs
ecfc3f8a63 pinctrl: nuvoton: npcm7xx: Use %zu printk format for ARRAY_SIZE()
503868a7c0 pinctrl: nuvoton: npcm7xx: Rename DS() macro to DSTR()
d9afc5146b watchdog: rti-wdt: Add missing pm_runtime_disable() in probe function
402b53dc7c pinctrl: pinconf-generic: Print arguments for bias-pull-*
7169f60110 watch_queue: Free the page array when watch_queue is dismantled
e64dc94990 crypto: arm/aes-neonbs-cbc - Select generic cbc and aes
a16f5ae8ad mailbox: imx: fix wakeup failure from freeze mode
051360e513 rxrpc: Fix call timer start racing with call destruction
a94d98e06e net: hns3: fix software vlan talbe of vlan 0 inconsistent with hardware
c73af4bc8a gfs2: Make sure FITRIM minlen is rounded up to fs block size
33c204266c rtc: check if __rtc_read_time was successful
381636f33f XArray: Update the LRU list in xas_split()
3b9fabe8f6 can: mcp251xfd: mcp251xfd_register_get_dev_id(): fix return of error value
ef0acc5141 can: mcba_usb: properly check endpoint type
0801a51d79 can: mcba_usb: mcba_usb_start_xmit(): fix double dev_kfree_skb in error path
1ac49c8fd4 XArray: Fix xas_create_range() when multi-order entry present
49f77ab50a wireguard: socket: ignore v6 endpoints when ipv6 is disabled
096f9d35ca wireguard: socket: free skb in send6 when ipv6 is disabled
cd032f218c wireguard: queueing: use CFI-safe ptr_ring cleanup function
8a0c70c238 ubifs: rename_whiteout: correct old_dir size computing
c34ae24a25 ubifs: Fix to add refcount once page is set private
07a209fade ubifs: Fix read out-of-bounds in ubifs_wbuf_write_nolock()
d07a242169 ubifs: setflags: Make dirtied_ino_d 8 bytes aligned
13b2a8151e ubifs: Add missing iput if do_tmpfile() failed in rename whiteout
83e42a7842 ubifs: Fix deadlock in concurrent rename whiteout and inode writeback
a90e2dbe66 ubifs: rename_whiteout: Fix double free for whiteout_ui->data
0c307349fe ASoC: SOF: Intel: Fix NULL ptr dereference when ENOMEM
0fb470eb48 KVM: SVM: fix panic on out-of-bounds guest IRQ
cd8c2d7c7c KVM: x86: fix sending PV IPI
eccfee4494 KVM: Prevent module exit until all VMs are freed
09c771c45c KVM: x86: Forbid VMM to set SYNIC/STIMER MSRs when SynIC wasn't activated
aea4ffdcf3 platform: chrome: Split trace include file
d3a913ba1f scsi: qla2xxx: Use correct feature type field during RFF_ID processing
633450063c scsi: qla2xxx: Reduce false trigger to login
dd48727cab scsi: qla2xxx: Fix N2N inconsistent PLOGI
0910a791a6 scsi: qla2xxx: Fix missed DMA unmap for NVMe ls requests
f296e888e9 scsi: qla2xxx: Fix hang due to session stuck
edea037716 scsi: qla2xxx: Fix incorrect reporting of task management failure
9dc104edd7 scsi: qla2xxx: Fix disk failure to rediscover
f97316dd39 scsi: qla2xxx: Suppress a kernel complaint in qla_create_qpair()
0e4a89efc2 scsi: qla2xxx: Check for firmware dump already collected
ef10a7530c scsi: qla2xxx: Add devids and conditionals for 28xx
bad77c9a47 scsi: qla2xxx: Fix device reconnect in loop topology
8b52e20c22 scsi: qla2xxx: Fix warning for missing error code
7c9745421d scsi: qla2xxx: Fix wrong FDMI data for 64G adapter
7fef50214d scsi: qla2xxx: Fix scheduling while atomic
c45147018d scsi: qla2xxx: Fix stuck session in gpdb
031547f4c6 powerpc: Fix build errors with newer binutils
68fa67e939 powerpc/lib/sstep: Fix build errors with newer binutils
ad806b4022 powerpc/lib/sstep: Fix 'sthcx' instruction
f39a330939 powerpc/kasan: Fix early region not updated correctly
89e5a42687 KVM: x86/mmu: Check for present SPTE when clearing dirty bit in TDP MMU
a3ad453008 ALSA: hda/realtek: Add alc256-samsung-headphone fixup
aa2ad067cd media: atomisp: fix bad usage at error handling logic
2412a5d294 mmc: host: Return an error when ->enable_sdio_irq() ops is missing
808990afd8 media: hdpvr: initialize dev->worker at hdpvr_register_videodev
32582f82df media: Revert "media: em28xx: add missing em28xx_close_extension"
b1c2857752 video: fbdev: sm712fb: Fix crash in smtcfb_write()
e7bb29df2a ARM: mmp: Fix failure to remove sram device
add823a9a5 ARM: tegra: tamonten: Fix I2C3 pad setting
08ec8450f3 lib/test_lockup: fix kernel pointer check for separate address spaces
40a5c93a74 uaccess: fix type mismatch warnings from access_ok()
a49b687a75 media: cx88-mpeg: clear interrupt status register before streaming video
4606350268 ASoC: soc-core: skip zero num_dai component in searching dai name
a840fc067e ARM: dts: bcm2711: Add the missing L1/L2 cache information
681a317034 video: fbdev: udlfb: replace snprintf in show functions with sysfs_emit
a7c624abf6 video: fbdev: omapfb: panel-tpo-td043mtea1: Use sysfs_emit() instead of snprintf()
543dae0a46 video: fbdev: omapfb: panel-dsi-cm: Use sysfs_emit() instead of snprintf()
910715c4b4 arm64: defconfig: build imx-sdma as a module
14df2556a1 ARM: dts: imx7: Use audio_mclk_post_div instead audio_mclk_root_clk
c241cfd0a5 ARM: ftrace: avoid redundant loads or clobbering IP
41082d6432 media: atomisp: fix dummy_ptr check to avoid duplicate active_bo
b554196e6d media: atomisp_gmin_platform: Add DMI quirk to not turn AXP ELDO2 regulator off on some boards
370b50492e ASoC: madera: Add dependencies on MFD
0020667edc ARM: dts: bcm2837: Add the missing L1/L2 cache information
f040c08102 ARM: dts: qcom: fix gic_irq_domain_translate warnings for msm8960
da210b1b55 video: fbdev: omapfb: acx565akm: replace snprintf with sysfs_emit
8c7e2141fb video: fbdev: cirrusfb: check pixclock to avoid divide by zero
1e33f19746 video: fbdev: w100fb: Reset global state
08dff48201 video: fbdev: nvidiafb: Use strscpy() to prevent buffer overflow
99e3f83539 media: ir_toy: free before error exiting
d658178b5a media: staging: media: zoran: fix various V4L2 compliance errors
bafec1a6ba media: staging: media: zoran: calculate the right buffer number for zoran_reap_stat_com
bd01629315 media: staging: media: zoran: move videodev alloc
b230f2d944 ntfs: add sanity check on allocation size
f7e8aff062 f2fs: compress: fix to print raw data size in error path of lz4 decompression
d91d1e681c NFSD: Fix nfsd_breaker_owns_lease() return values
498b7088db f2fs: fix to do sanity check on curseg->alloc_type
330d0e44fc ext4: don't BUG if someone dirty pages without asking ext4 first
cd6d719534 ext4: fix ext4_mb_mark_bb() with flex_bg with fast_commit
69d2421b55 ext4: correct cluster len and clusters changed accounting in ext4_mb_mark_bb
ecd384c436 locking/lockdep: Iterate lock_classes directly when reading lockdep files
3ad817f1bd spi: tegra20: Use of_device_get_match_data()
1c200c8bce nvme-tcp: lockdep: annotate in-kernel sockets
7e4967e913 parisc: Fix handling off probe non-access faults
ede1ef1a7d PM: core: keep irq flags in device_pm_check_callbacks()
227718c8bb ACPI/APEI: Limit printable size of BERT table data
cc051f497e Revert "Revert "block, bfq: honor already-setup queue merges""
1b69302bfa lib/raid6/test/Makefile: Use $(pound) instead of \# for Make 4.3
1b87ce6a77 ACPICA: Avoid walking the ACPI Namespace if it is not there
df6e00b1a5 bfq: fix use-after-free in bfq_dispatch_request
dd85ed4af8 fs/binfmt_elf: Fix AT_PHDR for unusual ELF files
9fc899ce5a irqchip/nvic: Release nvic_base upon failure
4bbd910de1 irqchip/qcom-pdc: Fix broken locking
f038185b6a Fix incorrect type in assignment of ipv6 port for audit
012c572007 loop: use sysfs_emit() in the sysfs xxx show()
448857f580 selinux: allow FIOCLEX and FIONCLEX with policy capability
4b9b60b5bf selinux: use correct type for context length
7507ead1e9 block, bfq: don't move oom_bfqq
79b16d00de pinctrl: npcm: Fix broken references to chip->parent_device
9d1d8e5e42 gcc-plugins/stackleak: Exactly match strings instead of prefixes
b0f2f89d74 regulator: rpi-panel: Handle I2C errors/timing to the Atmel
2784604c8c LSM: general protection fault in legacy_parse_param
e600b5973e fs: fix fd table size alignment properly
327f07e370 lib/test: use after free in register_test_dev_kmod()
00d2b9fe5e fs: fd tables have to be multiples of BITS_PER_LONG
1752fcd404 net: dsa: bcm_sf2_cfp: fix an incorrect NULL check on list iterator
edb91a475d NFSv4/pNFS: Fix another issue with a list iterator pointing to the head
5c94b6205e net/x25: Fix null-ptr-deref caused by x25_disconnect
4896c308a5 qlcnic: dcb: default to returning -EOPNOTSUPP
2165d0ebfb selftests: test_vxlan_under_vrf: Fix broken test case
f98dc124a4 net: phy: broadcom: Fix brcm_fet_config_init()
3e7a483af3 net: hns3: fix bug when PF set the duplicate MAC address for VFs
3eb92660e6 net: enetc: report software timestamping via SO_TIMESTAMPING
e9445a7a59 xen: fix is_xen_pmu()
af0c3ced24 clk: Initialize orphan req_rate
845e734f97 clk: qcom: gcc-msm8994: Fix gpll4 width
e2a2625392 kdb: Fix the putarea helper function
a9fa7d48a1 NFSv4.1: don't retry BIND_CONN_TO_SESSION on session error
8cd30d28da netfilter: nf_conntrack_tcp: preserve liberal flag in tcp options
fbd56a61ce jfs: fix divide error in dbNextAG
acb96e62e6 driver core: dd: fix return value of __setup handler
89748be18f firmware: google: Properly state IOMEM dependency
3d934d7b90 kgdbts: fix return value of __setup handler
f65ba8b988 serial: 8250: fix XOFF/XON sending when DMA is used
45e95a7bf8 kgdboc: fix return value of __setup handler
96038b1cf4 tty: hvc: fix return value of __setup handler
566e30289d pinctrl/rockchip: Add missing of_node_put() in rockchip_pinctrl_probe
669b05ff43 pinctrl: nomadik: Add missing of_node_put() in nmk_pinctrl_probe
9d095fe2fb pinctrl: mediatek: paris: Skip custom extra pin config dump for virtual GPIOs
861946289d pinctrl: mediatek: paris: Fix pingroup pin config state readback
7675fb2aaf pinctrl: mediatek: paris: Fix "argument" argument type for mtk_pinconf_get()
901e192ac9 pinctrl: mediatek: paris: Fix PIN_CONFIG_BIAS_* readback
72ea0fefea pinctrl: mediatek: Fix missing of_node_put() in mtk_pctrl_init
fddbfe43bf staging: mt7621-dts: fix GB-PC2 devicetree
00e0739ca1 staging: mt7621-dts: fix pinctrl properties for ethernet
47c31fe8ca staging: mt7621-dts: fix formatting
59ec187d7c staging: mt7621-dts: fix LEDs and pinctrl on GB-PC1 devicetree
942f68bf29 NFS: remove unneeded check in decode_devicenotify_args()
e025c66387 clk: tegra: tegra124-emc: Fix missing put_device() call in emc_ensure_emc_driver
54c8128297 clk: clps711x: Terminate clk_div_table with sentinel element
9ff533033d clk: loongson1: Terminate clk_div_table with sentinel element
bb680cabf2 clk: actions: Terminate clk_div_table with sentinel element
431f8a9cec nvdimm/region: Fix default alignment for small regions
f7210ca29a remoteproc: qcom_q6v5_mss: Fix some leaks in q6v5_alloc_memory_region
7a494580a8 remoteproc: qcom_wcnss: Add missing of_node_put() in wcnss_alloc_memory_region
5c1d484d96 remoteproc: qcom: Fix missing of_node_put in adsp_alloc_memory_region
f95fd61dd8 dmaengine: hisi_dma: fix MSI allocate fail when reload hisi_dma
d047d68ff0 clk: qcom: clk-rcg2: Update the frac table for pixel clock
334720f418 clk: qcom: clk-rcg2: Update logic to calculate D value for RCG
639744b242 clk: at91: sama7g5: fix parents of PDMCs' GCLK
0553ecbce9 clk: imx7d: Remove audio_mclk_root_clk
867258d3f3 dma-debug: fix return value of __setup handlers
2f3885514e NFS: Return valid errors from nfs2/3_decode_dirent()
7b59afe84a habanalabs: Add check for pci_enable_device
afcbc63752 iio: adc: Add check for devm_request_threaded_irq
df2dc4cf71 serial: 8250: Fix race condition in RTS-after-send handling
469ce5119f NFS: Use of mapping_set_error() results in spurious errors
659fe4d653 serial: 8250_lpss: Balance reference count for PCI DMA device
0aebb3944a serial: 8250_mid: Balance reference count for PCI DMA device
c92bd51313 phy: dphy: Correct lpx parameter and its derivatives(ta_{get,go,sure})
80805f555e clk: qcom: ipq8074: Use floor ops for SDCC1 clock
fd2601e366 pinctrl: renesas: checker: Fix miscalculation of number of states
c5cf977515 pinctrl: renesas: r8a77470: Reduce size for narrow VIN1 channel
b5db33a81e staging:iio:adc:ad7280a: Fix handing of device address bit reversing.
f5b01abf5f iio: mma8452: Fix probe failing when an i2c_device_id is used
8b89c9e68a clk: qcom: ipq8074: fix PCI-E clock oops
a70d5dbe2e soundwire: intel: fix wrong register name in intel_shim_wake
091704a9a7 cpufreq: qcom-cpufreq-nvmem: fix reading of PVS Valid fuse
f90ad94322 misc: alcor_pci: Fix an error handling path
553541c453 fsi: Aspeed: Fix a potential double free
cb212c3f0d fsi: aspeed: convert to devm_platform_ioremap_resource
c0b3c06414 pwm: lpc18xx-sct: Initialize driver data and hardware before pwmchip_add()
2cd05c38a2 mxser: fix xmit_buf leak in activate when LSR == 0xff
8513c93ead mfd: asic3: Add missing iounmap() on error asic3_mfd_probe
084be6309f tipc: fix the timer expires after interval 100ms
5d8162371c openvswitch: always update flow key after nat
4593c76a65 tcp: ensure PMTU updates are processed during fastopen
b26091a020 net: bcmgenet: Use stronger register read/writes to assure ordering
9088614323 PCI: Avoid broken MSI on SB600 USB devices
75a4a97b74 selftests/bpf/test_lirc_mode2.sh: Exit with proper code
0d3ad6142a i2c: mux: demux-pinctrl: do not deactivate a master that is not active
c483f8002d i2c: meson: Fix wrong speed use from probe
b089836218 af_netlink: Fix shift out of bounds in group mask calculation
40f3b8dada ipv4: Fix route lookups when handling ICMP redirects and PMTU updates
70a6cf749d Bluetooth: btmtksdio: Fix kernel oops in btmtksdio_interrupt
b441fcdff2 Bluetooth: call hci_le_conn_failed with hdev lock in hci_le_conn_failed
876cfe1380 selftests/bpf: Fix error reporting from sock_fields programs
ac1ec6f319 bareudp: use ipv6_mod_enabled to check if IPv6 enabled
c037e13539 can: isotp: support MSG_TRUNC flag when reading from socket
f402c49865 can: isotp: return -EADDRNOTAVAIL when reading from unbound socket
8a9d996d4e USB: storage: ums-realtek: fix error code in rts51x_read_mem()
f9a6661009 samples/bpf, xdpsock: Fix race when running for fix duration of time
cd84ea3920 bpf, sockmap: Fix double uncharge the mem of sk_msg
7b812a369e bpf, sockmap: Fix more uncharged while msg has more_data
bec34a91eb bpf, sockmap: Fix memleak in tcp_bpf_sendmsg while sk msg is full
c98d903ff9 RDMA/mlx5: Fix memory leak in error flow for subscribe event routine
a3587259ae mtd: rawnand: atmel: fix refcount issue in atmel_nand_controller_init
fa3d444245 MIPS: pgalloc: fix memory leak caused by pgd_free()
8c4808ff9e MIPS: RB532: fix return value of __setup handler
ef1728e3cb mips: cdmm: Fix refcount leak in mips_cdmm_phys_base
315772133a ath10k: Fix error handling in ath10k_setup_msa_resources
71f311b123 vxcan: enable local echo for sent CAN frames
3c2a397849 powerpc: 8xx: fix a return value error in mpc8xx_pic_init
956fab99ad platform/x86: huawei-wmi: check the return value of device_create_file()
1ba28cb692 selftests/bpf: Make test_lwt_ip_encap more stable and faster
08ab406781 libbpf: Unmap rings when umem deleted
6fa8edfc90 mfd: mc13xxx: Add check for mc13xxx_irq_request
bcf93175ed powerpc/sysdev: fix incorrect use to determine if list is empty
ab0a335b54 mips: DEC: honor CONFIG_MIPS_FP_SUPPORT=n
bbd91cdb62 net: axienet: fix RX ring refill allocation failure handling
9ec698984d PCI: Reduce warnings on possible RW1C corruption
a84cb039d2 IB/hfi1: Allow larger MTU without AIP
48d23ef901 power: supply: wm8350-power: Add missing free in free_charger_irq
9d3dab40af power: supply: wm8350-power: Handle error for wm8350_register_irq
5cf1371628 i2c: xiic: Make bus names unique
f01e08083c hv_balloon: rate-limit "Unhandled message" warning
ba2c6e353b KVM: x86/emulator: Defer not-present segment check in __load_segment_descriptor()
fa9089949d KVM: x86: Fix emulation in writing cr8
3e7e73ae2b powerpc/Makefile: Don't pass -mcpu=powerpc64 when building 32-bit
05abd49972 powerpc/mm/numa: skip NUMA_NO_NODE onlining in parse_numa_properties()
3e04a837db libbpf: Skip forward declaration when counting duplicated type names
6bb107332d gpu: host1x: Fix a memory leak in 'host1x_remove()'
d1c7759304 bpf, arm64: Feed byte-offset into bpf line info
694398af5f bpf, arm64: Call build_prologue() first in first JIT pass
06a0001366 drm/bridge: cdns-dsi: Make sure to to create proper aliases for dt
a3d53f0005 scsi: hisi_sas: Change permission of parameter prot_mask
705c70399e power: supply: bq24190_charger: Fix bq24190_vbus_is_enabled() wrong false return
1e06710c43 drm/tegra: Fix reference leak in tegra_dsi_ganged_probe
9ffa07c699 ext2: correct max file size computing
60605acf5b TOMOYO: fix __setup handlers return values
adb7c8d1de drm/amd/display: Remove vupdate_int_entry definition
e462b0f518 RDMA/mlx5: Fix the flow of a miss in the allocation of a cache ODP MR
279f318bd7 scsi: pm8001: Fix abort all task initialization
780c668a2d scsi: pm8001: Fix NCQ NON DATA command completion handling
f7a3f9e4e8 scsi: pm8001: Fix NCQ NON DATA command task initialization
f76bbee39e scsi: pm8001: Fix le32 values handling in pm80xx_chip_sata_req()
6bc86bca35 scsi: pm8001: Fix le32 values handling in pm80xx_chip_ssp_io_req()
27ccdcaa01 scsi: pm8001: Fix payload initialization in pm80xx_encrypt_update()
6c0e850c22 scsi: pm8001: Fix le32 values handling in pm80xx_set_sas_protocol_timer_config()
edde1ede76 scsi: pm8001: Fix payload initialization in pm80xx_set_thermal_config()
257a55622c scsi: pm8001: Fix command initialization in pm8001_chip_ssp_tm_req()
f55a7bc38f scsi: pm8001: Fix command initialization in pm80XX_send_read_log()
5349cde1df dm crypt: fix get_key_size compiler warning if !CONFIG_KEYS
d4862bea08 drm/msm/dpu: fix dp audio condition
7b52fb813c drm/msm/dpu: add DSPP blocks teardown
413c62697b drm/msm/dp: populate connector of struct dp_panel
441a83ff27 iwlwifi: mvm: Fix an error code in iwl_mvm_up()
c12692c3e9 iwlwifi: Fix -EIO error code that is never returned
ec376f5c11 dax: make sure inodes are flushed before destroy cache
5e6b030ac3 IB/cma: Allow XRC INI QPs to set their local ACK timeout
9c384e1afa drm/amd/display: Add affected crtcs to atomic state for dsc mst unplug
80b96ac9d2 drm/amd/pm: enable pm sysfs write for one VF mode
06e778d184 iommu/ipmmu-vmsa: Check for error num after setting mask
ab63b24ae6 HID: i2c-hid: fix GET/SET_REPORT for unnumbered reports
879356a6a0 power: supply: ab8500: Fix memory leak in ab8500_fg_sysfs_init
f03ef518c1 drm/bridge: dw-hdmi: use safe format when first in bridge chain
e0e25e131d PCI: aardvark: Fix reading PCI_EXP_RTSTA_PME bit on emulated bridge
b1af8b9ec0 livepatch: Fix build failure on 32 bits processors
6f095441f8 scripts/dtc: Call pkg-config POSIXly correct
080822563b net: dsa: mv88e6xxx: Enable port policy support on 6097
2ac4f049db mt76: mt7615: check sta_rates pointer in mt7615_sta_rate_tbl_update
2430af1241 mt76: mt7603: check sta_rates pointer in mt7603_sta_rate_tbl_update
232c1cc986 mt76: mt7915: use proper aid value in mt7915_mcu_sta_basic_tlv
253cc4aafc mt76: mt7915: use proper aid value in mt7915_mcu_wtbl_generic_tlv in sta mode
b5d363ff17 powerpc/perf: Don't use perf_hw_context for trace IMC PMU
c18b538617 KVM: PPC: Book3S HV: Check return value of kvmppc_radix_init
8b64c158a0 powerpc: dts: t1040rdb: fix ports names for Seville Ethernet switch
be703360ed ray_cs: Check ioremap return value
43f2fe2a69 power: reset: gemini-poweroff: Fix IRQ check in gemini_poweroff_probe
da71a1483b i40e: respect metadata on XSK Rx to skb
b2e48cd141 i40e: don't reserve excessive XDP_PACKET_HEADROOM on XSK Rx to skb
e8fe653fa7 KVM: PPC: Fix vmx/vsx mixup in mmio emulation
11cb9eba06 RDMA/core: Set MR type in ib_reg_user_mr
11f11ac281 ath9k_htc: fix uninit value bugs
6e669baa33 drm/amd/pm: return -ENOTSUPP if there is no get_dpm_ultimate_freq function
19a7eba284 drm/amd/display: Fix a NULL pointer dereference in amdgpu_dm_connector_add_common_modes()
9abee51534 drm/nouveau/acr: Fix undefined behavior in nvkm_acr_hsfw_load_bl()
47402eaf88 ionic: fix type complaint in ionic_dev_cmd_clean()
1ba10e5c39 drm/edid: Don't clear formats if using deep color
d99e7feaed mtd: rawnand: gpmi: fix controller timings setting
364b2eee62 mtd: onenand: Check for error irq
96ea88eb9b Bluetooth: hci_serdev: call init_rwsem() before p->open()
b267a8118c udmabuf: validate ubuf->pagecount
56722aa77b libbpf: Fix possible NULL pointer dereference when destroying skeleton
4a9c268a40 drm/panfrost: Check for error num after setting mask
5d1114ede5 ath10k: fix memory overwrite of the WoWLAN wakeup packet pattern
fb2be762a4 drm: bridge: adv7511: Fix ADV7535 HPD enablement
d9d61beb21 drm/bridge: nwl-dsi: Fix PM disable depth imbalance in nwl_dsi_probe
064e7f7532 drm/bridge: Add missing pm_runtime_disable() in __dw_mipi_dsi_probe
d8db734df6 drm/bridge: Fix free wrong object in sii8620_init_rcp_input_dev
ec3924eab5 drm/meson: osd_afbcd: Add an exit callback to struct meson_afbcd_ops
a1c665f5b7 ARM: configs: multi_v5_defconfig: re-enable CONFIG_V4L_PLATFORM_DRIVERS
1f24716e38 ASoC: codecs: wcd934x: Add missing of_node_put() in wcd934x_codec_parse_data
abefbf602c ASoC: msm8916-wcd-analog: Fix error handling in pm8916_wcd_analog_spmi_probe
90ac679aa6 ASoC: atmel: Fix error handling in sam9x5_wm8731_driver_probe
ec26e3ce3c ASoC: atmel: sam9x5_wm8731: use devm_snd_soc_register_card()
541251b903 mmc: davinci_mmc: Handle error for clk_enable
19eb5c7957 ASoC: msm8916-wcd-digital: Fix missing clk_disable_unprepare() in msm8916_wcd_digital_probe
42042c7a3d ASoC: imx-es8328: Fix error return code in imx_es8328_probe()
fe4db4ea21 ASoC: fsl_spdif: Disable TX clock when stop
86b6cf9894 ASoC: mxs: Fix error handling in mxs_sgtl5000_probe
c8c981cfc0 ASoC: dmaengine: do not use a NULL prepare_slave_config() callback
f452cff025 ASoC: SOF: Add missing of_node_put() in imx8m_probe
0d82401d46 ASoC: rockchip: i2s: Fix missing clk_disable_unprepare() in rockchip_i2s_probe
7e8b0fd0eb ASoC: rockchip: i2s: Use devm_platform_get_and_ioremap_resource()
b5664a584e ivtv: fix incorrect device_caps for ivtvfb
ebd4f1501e media: saa7134: fix incorrect use to determine if list is empty
dd67315994 media: saa7134: convert list_for_each to entry variant
066d9b48f9 video: fbdev: omapfb: Add missing of_node_put() in dvic_probe_of
20da8404e4 ASoC: fsi: Add check for clk_enable
db1c00a025 ASoC: wm8350: Handle error for wm8350_register_irq
662ee5ac6b ASoC: atmel: Add missing of_node_put() in at91sam9g20ek_audio_probe
663e7a7287 media: vidtv: Check for null return of vzalloc
4d68603cc4 media: stk1160: If start stream fails, return buffers with VB2_BUF_STATE_QUEUED
b02752d753 m68k: coldfire/device.c: only build for MCF_EDMA when h/w macros are defined
9ca3635a0a arm64: dts: rockchip: Fix SDIO regulator supply properties on rk3399-firefly
7e6f578662 ALSA: firewire-lib: fix uninitialized flag for AV/C deferred transaction
64eee4127c memory: emif: check the pointer temp in get_device_details()
330a9b0d38 memory: emif: Add check for setup_interrupts
4639c1d97f ASoC: soc-compress: prevent the potentially use of null pointer
a6ee60d4a9 ASoC: dwc-i2s: Handle errors for clk_enable
39bee81e30 ASoC: atmel_ssc_dai: Handle errors for clk_enable
dc947d175c ASoC: mxs-saif: Handle errors for clk_enable
a754ea0de3 printk: fix return value of printk.devkmsg __setup handler
87a265e292 arm64: dts: broadcom: Fix sata nodename
f63122803d arm64: dts: ns2: Fix spi-cpol and spi-cpha property
5d6a0dc6ba ALSA: spi: Add check for clk_enable()
039fae34f8 ASoC: ti: davinci-i2s: Add check for clk_enable()
94cb9fe5d8 ASoC: rt5663: check the return value of devm_kzalloc() in rt5663_parse_dp()
7ce3e6e103 uaccess: fix nios2 and microblaze get_user_8()
19894751f6 ASoC: codecs: wcd934x: fix return value of wcd934x_rx_hph_mode_put
f126dcbe70 media: cedrus: h264: Fix neighbour info buffer size
c011ae1665 media: cedrus: H265: Fix neighbour info buffer size
44973633b0 media: usb: go7007: s2250-board: fix leak in probe()
ec8a37b2d9 media: em28xx: initialize refcount before kref_get
1b46f57d51 media: video/hdmi: handle short reads of hdmi info frame.
170ad3942b ARM: dts: imx: Add missing LVDS decoder on M53Menlo
2a0eb50d9a ARM: dts: sun8i: v3s: Move the csi1 block to follow address order
77406ac6ef soc: ti: wkup_m3_ipc: Fix IRQ check in wkup_m3_ipc_probe
18b2ec361a firmware: ti_sci: Fix compilation failure when CONFIG_TI_SCI_PROTOCOL is not defined
8395a17ef6 arm64: dts: qcom: sm8150: Correct TCS configuration for apps rsc
d19248e23f arm64: dts: qcom: sdm845: fix microphone bias properties and values
2042c6fbfb soc: qcom: aoss: remove spurious IRQF_ONESHOT flags
5a990a65d4 soc: qcom: ocmem: Fix missing put_device() call in of_get_ocmem
b5d6eba719 soc: qcom: rpmpd: Check for null return of devm_kcalloc
0c11cb8db4 ARM: dts: qcom: ipq4019: fix sleep clock
22474dfd0c firmware: qcom: scm: Remove reassignment to desc following initializer
bf4bad1114 video: fbdev: fbcvt.c: fix printing in fb_cvt_print_name()
6de6a64f23 video: fbdev: atmel_lcdfb: fix an error code in atmel_lcdfb_probe()
64ec3e678d video: fbdev: smscufx: Fix null-ptr-deref in ufx_usb_probe()
0dff86aeb1 video: fbdev: controlfb: Fix COMPILE_TEST build
ec1c20b02a video: fbdev: controlfb: Fix set but not used warnings
f8bf19f7f3 video: fbdev: matroxfb: set maxvram of vbG200eW to the same as vbG200 to avoid black screen
3187a1d4d5 media: aspeed: Correct value for h-total-pixels
245561612b media: hantro: Fix overfill bottom register field name
032b141a91 media: meson: vdec: potential dereference of null pointer
d3e5106c67 media: coda: Fix missing put_device() call in coda_get_vdoa_data
c9f4586d99 ASoC: generic: simple-card-utils: remove useless assignment
2c357e0277 ASoC: xilinx: xlnx_formatter_pcm: Handle sysclk setting
712dd2ac26 media: bttv: fix WARNING regression on tunerless devices
bc2573abc6 media: mtk-vcodec: potential dereference of null pointer
8a83731a09 media: v4l2-mem2mem: Apply DST_QUEUE_OFF_BASE on MMAP buffers across ioctls
c76188715d media: staging: media: zoran: fix usage of vb2_dma_contig_set_max_seg_size
f622bd0758 kunit: make kunit_test_timeout compatible with comment
9e63bcb71d selftests, x86: fix how check_cc.sh is being invoked
d2c53e77b0 f2fs: fix compressed file start atomic write may cause data corruption
1c4d94e4f0 f2fs: compress: remove unneeded read when rewrite whole cluster
2c4741d1b0 btrfs: fix unexpected error path when reflinking an inline extent
3ef3bc75cd f2fs: fix to avoid potential deadlock
85cc399b65 nfsd: more robust allocation failure handling in nfsd_file_cache_init
1a11a87374 f2fs: fix missing free nid in f2fs_handle_failed_inode
c0cffc1fb3 perf/x86/intel/pt: Fix address filter config for 32-bit kernel
13c8e37e1f perf/core: Fix address filter parser for multiple filters
a9faa5beda rseq: Remove broken uapi field layout on 32-bit little endian
f0250e05e5 rseq: Optimise rseq_get_rseq_cs() and clear_rseq_cs()
ecc17de4b9 sched/core: Export pelt_thermal_tp
40732cab51 sched/debug: Remove mpol_get/put and task_lock/unlock from sched_show_numa
2b5d41bcf2 f2fs: fix to enable ATGC correctly via gc_idle sysfs interface
9d92be1a09 watch_queue: Actually free the watch
5ae75b4ed3 watch_queue: Fix NULL dereference in error cleanup
509565faed io_uring: terminate manual loop iterator loop correctly for non-vecs
44a77e52bd clocksource: acpi_pm: fix return value of __setup handler
d678f002f0 hwmon: (pmbus) Add Vin unit off handling
7ca525b4cc hwrng: nomadik - Change clk_disable to clk_disable_unprepare
e4c777fd8c amba: Make the remove callback return void
1c6ac39763 vfio: platform: simplify device removal
c93017c8d5 crypto: ccree - Fix use after free in cc_cipher_exit()
78622926fe crypto: ccp - ccp_dmaengine_unregister release dma channels
9eeee6f684 ACPI: APEI: fix return value of __setup handlers
0b45bf1659 clocksource/drivers/timer-of: Check return value of of_iomap in timer_of_base_init()
b33c753cff clocksource/drivers/timer-microchip-pit64b: Use notrace
db9d00461b clocksource/drivers/exynos_mct: Handle DTS with higher number of interrupts
d4e13c4a6f clocksource/drivers/exynos_mct: Refactor resources allocation
42d331a279 clocksource/drivers/timer-ti-dm: Fix regression from errata i940 fix
aedff03da4 crypto: vmx - add missing dependencies
51939008ca crypto: amlogic - call finalize with bh disabled
24857d87cc crypto: sun8i-ce - call finalize with bh disabled
bf4814d58b crypto: sun8i-ss - call finalize with bh disabled
a4067ccb97 hwrng: atmel - disable trng on failure path
b7940bef6f spi: spi-zynqmp-gqspi: Handle error for dma_set_mask
3928a04bc6 PM: suspend: fix return value of __setup handler
052a218db0 PM: hibernate: fix __setup handler error handling
0b5924a14d block: don't delete queue kobject before its children
40b288a861 nvme: cleanup __nvme_check_ids
32c4db2a52 hwmon: (sch56xx-common) Replace WDOG_ACTIVE with WDOG_HW_RUNNING
ec8536f701 hwmon: (pmbus) Add mutex to regulator ops
18a18594ae spi: pxa2xx-pci: Balance reference count for PCI DMA device
55259cb374 crypto: ccree - don't attempt 0 len DMA mappings
d788ad472f EVM: fix the evm= __setup handler return value
a137f93ae5 audit: log AUDIT_TIME_* records only from rules
5e9501e60b crypto: rockchip - ECB does not need IV
8265bea7d8 selftests/x86: Add validity check and allow field splitting
f7d9249af3 arm64/mm: avoid fixmap race condition when create pud mapping
99a8dfce7c spi: tegra114: Add missing IRQ check in tegra_spi_probe
71dba67138 thermal: int340x: Check for NULL after calling kmemdup()
8e57117142 crypto: mxs-dcp - Fix scatterlist processing
ec1d372974 crypto: authenc - Fix sleep in atomic context in decrypt_tail
fdfaafeb4b crypto: sun8i-ss - really disable hash on A80
19693838c8 hwrng: cavium - HW_RANDOM_CAVIUM should depend on ARCH_THUNDER
bc20294cc8 hwrng: cavium - Check health status while reading random data
962d1f59d5 selinux: check return value of sel_make_avc_files
1ae9b020dd regulator: qcom_smd: fix for_each_child.cocci warnings
c20975954e PCI: xgene: Revert "PCI: xgene: Fix IB window setup"
0f56f24015 PCI: pciehp: Clear cmd_busy bit in polling mode
89ddcc8191 drm/i915/gem: add missing boundary check in vm_access
b84857c06e drm/i915/opregion: check port number bounds for SWSCI display power state
88975951d4 brcmfmac: pcie: Fix crashes due to early IRQs
1cbcf93a93 brcmfmac: pcie: Replace brcmf_pcie_copy_mem_todev with memcpy_toio
f3820ddaf4 brcmfmac: pcie: Release firmwares in the brcmf_pcie_setup error path
daa07f2902 brcmfmac: firmware: Allocate space for default boardrev in nvram
1dd031eb99 xtensa: fix xtensa_wsr always writing 0
dac518bbce xtensa: fix stop_machine_cpuslocked call in patch_text
20f974dce5 media: davinci: vpif: fix unbalanced runtime PM enable
7c9b915b94 media: davinci: vpif: fix unbalanced runtime PM get
cde90e8291 media: gpio-ir-tx: fix transmit with long spaces on Orange Pi PC
785ffce44a DEC: Limit PMAX memory probing to R3k systems
8dde2296ec bcache: fixup multiple threads crash
37d2b4fa5c crypto: rsa-pkcs1pad - fix buffer overread in pkcs1pad_verify_complete()
b89fb8b882 crypto: rsa-pkcs1pad - restore signature length check
f38c318068 crypto: rsa-pkcs1pad - correctly get hash from source scatterlist
c1db3f44f2 crypto: rsa-pkcs1pad - only allow with rsa
27a6f495b6 exec: Force single empty string when argv is empty
b02d33171d lib/raid6/test: fix multiple definition linking error
bf057eac9a thermal: int340x: Increase bitmap size
86a926c3f0 pstore: Don't use semaphores in always-atomic-context code
b26f400e4f carl9170: fix missing bit-wise or operator for tx_params
3aef4df6e1 mgag200 fix memmapsl configuration in GCTL6 register
ef1df91685 ARM: dts: exynos: add missing HDMI supplies on SMDK5420
3cde68a1eb ARM: dts: exynos: add missing HDMI supplies on SMDK5250
5ac205c414 ARM: dts: exynos: fix UART3 pins configuration in Exynos5250
7187c9beb7 ARM: dts: at91: sama5d2: Fix PMERRLOC resource size
2ca2a5552a video: fbdev: atari: Atari 2 bpp (STe) palette bugfix
72af881092 video: fbdev: sm712fb: Fix crash in smtcfb_read()
ba09b04173 drm/edid: check basic audio support on CEA extension block
ce1927b8cf block: don't merge across cgroup boundaries if blkcg is enabled
6e0d24598c block: limit request dispatch loop duration
958e9b56de mailbox: tegra-hsp: Flush whole channel
f67a140078 drivers: hamradio: 6pack: fix UAF bug caused by mod_timer()
b35eb48471 ext4: fix fs corruption when tring to remove a non-empty directory with IO error
a1e6884b2d ext4: fix ext4_fc_stats trace point
c119fb65f6 coredump: Also dump first pages of non-executable ELF libraries
7ad5ccc3da ACPI: properties: Consistently return -ENOENT if there are no more references
ef3a87e0c4 arm64: dts: ti: k3-j7200: Fix gic-v3 compatible regs
18864e8b83 arm64: dts: ti: k3-j721e: Fix gic-v3 compatible regs
e85fa9f4e9 arm64: dts: ti: k3-am65: Fix gic-v3 compatible regs
7ce550a01b arm64: signal: nofpsimd: Do not allocate fp/simd context when not available
210e7b43d4 udp: call udp_encap_enable for v6 sockets when enabling encap
e1a58498ef powerpc/kvm: Fix kvm_use_magic_page
d72866a7f5 can: isotp: sanitize CAN ID checks in isotp_bind()
fde8c5cad0 drbd: fix potential silent data corruption
b101e74f9a dm integrity: set journal entry unused when shrinking device
d5d5804acc mm/kmemleak: reset tag when compare object pointer
bc2f58b8e4 mm,hwpoison: unmap poisoned page before invalidation
608c501d70 Revert "mm: madvise: skip unmapped vma holes passed to process_madvise"
8b354e3032 mm: madvise: return correct bytes advised with process_madvise
928c06c114 mm: madvise: skip unmapped vma holes passed to process_madvise
51f7557c3c ALSA: hda/realtek: Fix audio regression on Mi Notebook Pro 2020
9017201e8d ALSA: pcm: Fix potential AB/BA lock with buffer_mutex and mmap_lock
7b7a03d8b5 ALSA: hda: Avoid unsol event during RPM suspending
a55e2d7423 ALSA: cs4236: fix an incorrect NULL check on list iterator
edefc4b2a8 cifs: fix NULL ptr dereference in smb2_ioctl_query_info()
9963ccea60 cifs: prevent bad output lengths in smb2_ioctl_query_info()
b75198edda Revert "Input: clear BTN_RIGHT/MIDDLE on buttonpads"
34bc1f69bf riscv: Increase stack size under KASAN
24b9b8e95c riscv: Fix fill_callchain return value
0f8c0bd0a4 qed: validate and restrict untrusted VFs vlan promisc mode
a3af3d4319 qed: display VF trust config
aa28075f06 scsi: libsas: Fix sas_ata_qc_issue() handling of NCQ NON DATA commands
4bcefc78c8 mempolicy: mbind_range() set_policy() after vma_merge()
fa37c17143 mm: invalidate hwpoison page cache page in fault path
7188e7c96f mm/pages_alloc.c: don't create ZONE_MOVABLE beyond the end of a node
51dbb5e36d jffs2: fix memory leak in jffs2_scan_medium
607d3aab73 jffs2: fix memory leak in jffs2_do_mount_fs
7bb7428dd7 jffs2: fix use-after-free in jffs2_clear_xattr_subsystem
b417f9c505 can: ems_usb: ems_usb_start_xmit(): fix double dev_kfree_skb() in error path
3a21ee89bc mtd: rawnand: protect access to rawnand devices while in suspend
145a63201d spi: mxic: Fix the transmit path
be22ebe79e pinctrl: samsung: drop pin banks references on error paths
b97b305656 remoteproc: Fix count check in rproc_coredump_write()
784630df17 f2fs: fix to do sanity check on .cp_pack_total_block_count
e58ee6bd93 f2fs: quota: fix loop condition at f2fs_quota_sync()
ec67040703 f2fs: fix to unlock page correctly in error path of is_alive()
7af164fa2f NFSD: prevent integer overflow on 32 bit systems
65e21cc042 NFSD: prevent underflow in nfssvc_decode_writeargs()
b7b430104a SUNRPC: avoid race between mod_timer() and del_timer_sync()
f51ab2f60a HID: intel-ish-hid: Use dma_alloc_coherent for firmware update
a1df8e60f2 firmware: stratix10-svc: add missing callback parameter on RSU
e94f5fbe7a Documentation: update stable tree link
f4bab992ee Documentation: add link to stable release candidate tree
10ee5662d5 KEYS: fix length validation in keyctl_pkey_params_get_2()
5a41a3033a ptrace: Check PTRACE_O_SUSPEND_SECCOMP permission on PTRACE_SEIZE
2775d8e364 clk: uniphier: Fix fixed-rate initialization
25cd5872d9 greybus: svc: fix an error handling bug in gb_svc_hello()
9f0cd81174 iio: inkern: make a best effort on offset calculation
19e533452f iio: inkern: apply consumer scale when no channel scale is available
e10dbe7f6a iio: inkern: apply consumer scale on IIO_VAL_INT cases
9f4fffc2ab iio: afe: rescale: use s64 for temporary scale calculations
9cd1b02655 coresight: Fix TRCCONFIGR.QE sysfs interface
7b478cb67b mei: avoid iterator usage outside of list_for_each_entry
ec8975417d mei: me: add Alder Lake N device id.
0a0c61dd07 xhci: fix uninitialized string returned by xhci_decode_ctrl_ctx()
811f403519 xhci: make xhci_handshake timeout for xhci_reset() adjustable
3a820d1ca1 xhci: fix runtime PM imbalance in USB2 resume
c41387f96a xhci: fix garbage USBSTS being logged in some cases
1e0f089f70 USB: usb-storage: Fix use of bitfields for hardware data in ene_ub6250.c
39a70732eb virtio-blk: Use blk_validate_block_size() to validate block size
290e05f346 tpm: fix reference counting for struct tpm_chip
fcd3c31dd1 iommu/iova: Improve 32-bit free space estimate
68c80088f5 locking/lockdep: Avoid potential access of invalid memory in lock_class
f19d8dfad6 net: dsa: microchip: add spi_device_id tables
8d3f4ad430 af_key: add __GFP_ZERO flag for compose_sadb_supported in function pfkey_register
ef1a6ab36d Input: zinitix - do not report shadow fingers
21680aabc4 spi: Fix erroneous sgs value with min_t()
8fb7af1b5a Revert "gpio: Revert regression in sysfs-gpio (gpiolib.c)"
18a4417a19 net:mcf8390: Use platform_get_irq() to get the interrupt
102d7f6c2e spi: Fix invalid sgs value
a4f4ce3dee gpio: Revert regression in sysfs-gpio (gpiolib.c)
fc9a35627c ethernet: sun: Free the coherent when failing in probing
3c84471925 tools/virtio: fix virtio_test execution
6d98dc2369 vdpa/mlx5: should verify CTRL_VQ feature exists for MQ
c97ffb4184 virtio_console: break out of buf poll on remove
0c00d38337 ARM: mstar: Select HAVE_ARM_ARCH_TIMER
a7e75e5ed4 xfrm: fix tunnel model fragmentation behavior
e05ae08ea8 HID: logitech-dj: add new lightspeed receiver id
ff919a7ad9 netdevice: add the case if dev is NULL
c4dc584a2d hv: utils: add PTP_1588_CLOCK to Kconfig to fix build
d136a2574a USB: serial: simple: add Nokia phone driver
38e3d48ffe USB: serial: pl2303: add IBM device IDs
d4d975e792 swiotlb: fix info leak with DMA_FROM_DEVICE
414e6c8e94 ANDROID: fix up abi issue with struct snd_pcm_runtime
51790ed529 Merge 5.10.109 into android12-5.10-lts
d9c5818a0b Linux 5.10.109
163960a7de llc: only change llc->dev when bind() succeeds
2b5a6d7714 nds32: fix access_ok() checks in get/put_user
c064268eb8 wcn36xx: Differentiate wcn3660 from wcn3620
95193d12f1 tpm: use try_get_ops() in tpm-space.c
5d3ff9542a mac80211: fix potential double free on mesh join
fcc9797d0d rcu: Don't deboost before reporting expedited quiescent state
87f7ed7c36 Revert "ath: add support for special 0x0 regulatory domain"
c971e6a1c8 crypto: qat - disable registration of algorithms
9f4e64611e ACPI: video: Force backlight native for Clevo NL5xRU and NL5xNU
0b2ffba2de ACPI: battery: Add device HID and quirk for Microsoft Surface Go 3
2724b72b22 ACPI / x86: Work around broken XSDT on Advantech DAC-BJ01 board
2c74374c2e netfilter: nf_tables: initialize registers in nft_do_chain()
eb1ba8d1c3 drivers: net: xgene: Fix regression in CRC stripping
a2368d10b7 ALSA: pci: fix reading of swapped values from pcmreg in AC97 codec
6936d2ecf8 ALSA: cmipci: Restore aux vol on suspend/resume
cbd27127af ALSA: usb-audio: Add mute TLV for playback volumes on RODE NT-USB
0ae81ef3ea ALSA: pcm: Add stream lock during PCM reset ioctl operations
b560d670c8 ALSA: pcm: Fix races among concurrent prealloc proc writes
a38440f006 ALSA: pcm: Fix races among concurrent prepare and hw_params/hw_free calls
8527c8f052 ALSA: pcm: Fix races among concurrent read/write and buffer changes
0f6947f5f5 ALSA: pcm: Fix races among concurrent hw_params and hw_free calls
014c81dfb3 ALSA: hda/realtek: Add quirk for ASUS GA402
05256f3fd6 ALSA: hda/realtek - Fix headset mic problem for a HP machine with alc671
ca8247b4df ALSA: hda/realtek: Add quirk for Clevo NP50PNJ
26fe8f3103 ALSA: hda/realtek: Add quirk for Clevo NP70PNJ
80eab86a86 ALSA: usb-audio: add mapping for new Corsair Virtuoso SE
5ce74ff705 ALSA: oss: Fix PCM OSS buffer allocation overflow
db03abd0da ASoC: sti: Fix deadlock via snd_pcm_stop_xrun() call
571df3393f llc: fix netdevice reference leaks in llc_ui_bind()
56dc187b35 staging: fbtft: fb_st7789v: reset display before initialization
351493858e tpm: Fix error handling in async work
ea21245cdc cgroup-v1: Correct privileges check in release_agent writes
824a950c3f cgroup: Use open-time cgroup namespace for process migration perm checks
f28364fe38 cgroup: Allocate cgroup_file_ctx for kernfs_open_file->priv
9eeaa2d7d5 exfat: avoid incorrectly releasing for root inode
ae8ec5eabb net: ipv6: fix skb_over_panic in __ip6_append_data
25c23fe40e nfc: st21nfca: Fix potential buffer overflows in EVT_TRANSACTION
ab2d1d40a1 Revert "vsock: each transport cycles only on its own sockets"
644c989f41 Merge 5.10.108 into android12-5.10-lts
9940314ebf Linux 5.10.108
37119edab8 Revert "selftests/bpf: Add test for bpf_timer overwriting crash"
9248694dac esp: Fix possible buffer overflow in ESP transformation
96340cdd55 smsc95xx: Ignore -ENODEV errors when device is unplugged
e27b51af54 net: usb: Correct reset handling of smsc95xx
b54daeafc1 net: usb: Correct PHY handling of smsc95xx
204d38dc6a perf symbols: Fix symbol size calculation condition
f0d43d22d2 Input: aiptek - properly check endpoint type
98e7a654a5 scsi: mpt3sas: Page fault in reply q processing
10a805334a usb: usbtmc: Fix bug in pipe direction for control transfers
00bdd9bf1a usb: gadget: Fix use-after-free bug by not setting udc->dev.driver
28bc026739 usb: gadget: rndis: prevent integer overflow in rndis_set_response()
2c010c61e6 arm64: fix clang warning about TRAMP_VALIAS
277b7f6394 net: mscc: ocelot: fix backwards compatibility with single-chain tc-flower offload
2550afba2a net: bcmgenet: skip invalid partial checksums
bf5b7aae86 bnx2x: fix built-in kernel driver load failure
c07fdba12f net: phy: mscc: Add MODULE_FIRMWARE macros
ba50073cf4 net: dsa: Add missing of_node_put() in dsa_port_parse_of
a630ad5e8b net: handle ARPHRD_PIMREG in dev_is_mac_header_xmit()
336b6be6ad drm/panel: simple: Fix Innolux G070Y2-L01 BPP settings
9d45aec02f drm/imx: parallel-display: Remove bus flags check in imx_pd_bridge_atomic_check()
9b763ceda6 hv_netvsc: Add check for kvmalloc_array
09a7264fb0 atm: eni: Add check for dma_map_single
70b7b3c055 net/packet: fix slab-out-of-bounds access in packet_recvmsg()
169add82d2 net: phy: marvell: Fix invalid comparison in the resume and suspend functions
01fac1ca8a esp6: fix check on ipv6_skip_exthdr's return value
d9fe590970 vsock: each transport cycles only on its own sockets
ac7dd60946 efi: fix return value of __setup handlers
fa3aa103e7 mm: swap: get rid of livelock in swapin readahead
df3301dc60 ocfs2: fix crash when initialize filecheck kobj fails
0f9b7b8df1 crypto: qcom-rng - ensure buffer for generate is completely filled
9a559b8868 Merge branch 'android12-5.10' into `android12-5.10-lts`
8646e92696 Merge 5.10.107 into android12-5.10-lts
4c8814277b Linux 5.10.107
7a0d13ef67 arm64: kvm: Fix copy-and-paste error in bhb templates for v5.10 stable
dc1163203a io_uring: return back safer resurrect
8fdaab341b kselftest/vm: fix tests build with old libc
2490695ffd sfc: extend the locking on mcdi->seqno
2fad5b6948 tcp: make tcp_read_sock() more robust
3f9a8f8a95 nl80211: Update bss channel on channel switch for P2P_CLIENT
0ba557d330 drm/vrr: Set VRR capable prop only if it is attached to connector
9a8e4a5c5b iwlwifi: don't advertise TWT support
c5ea0221c8 atm: firestream: check the return value of ioremap() in fs_init()
efdd92c18e can: rcar_canfd: rcar_canfd_channel_probe(): register the CAN device when fully ready
ebe106eac6 ARM: 9178/1: fix unmet dependency on BITREVERSE for HAVE_ARCH_BITREVERSE
e8ad9ecc40 MIPS: smp: fill in sibling and core maps earlier
8c70b9b470 mac80211: refuse aggregations sessions before authorized
d687d7559e ARM: dts: rockchip: fix a typo on rk3288 crypto-controller
6f0a94931c ARM: dts: rockchip: reorder rk322x hmdi clocks
6493c6aa8b arm64: dts: agilex: use the compatible "intel,socfpga-agilex-hsotg"
c5c8c649fe arm64: dts: rockchip: reorder rk3399 hdmi clocks
f7f062919f arm64: dts: rockchip: fix rk3399-puma eMMC HS400 signal integrity
ca142038a5 xfrm: Fix xfrm migrate issues when address family changes
d8889a445b xfrm: Check if_id in xfrm_migrate
6056abc99b sctp: fix the processing for INIT chunk
bdf0316982 Revert "xfrm: state and policy should fail if XFRMA_IF_ID 0"
5287773dba Merge 5.10.106 into android12-5.10-lts
9e8aa4cec7 Merge 5.10.105 into android12-5.10-lts
55d57b8929 Merge b65b87e718 ("arm64: proton-pack: Include unprivileged eBPF status in Spectre v2 mitigation reporting") into android12-5.10-lts
9fddd6c893 UPSTREAM: arm64: proton-pack: Include unprivileged eBPF status in Spectre v2 mitigation reporting
531b5ce9dd UPSTREAM: arm64: Use the clearbhb instruction in mitigations
d05b159f71 UPSTREAM: KVM: arm64: Allow SMCCC_ARCH_WORKAROUND_3 to be discovered and migrated
11bed3edbd UPSTREAM: arm64: Mitigate spectre style branch history side channels
9bc6a2543d UPSTREAM: arm64: Do not include __READ_ONCE() block in assembly files
2434153e7e UPSTREAM: KVM: arm64: Allow indirect vectors to be used without SPECTRE_V3A
cfa82070a7 UPSTREAM: arm64: proton-pack: Report Spectre-BHB vulnerabilities as part of Spectre-v2
5195a80d07 UPSTREAM: arm64: Add percpu vectors for EL1
9e96a3d6ae Merge 56cf5326bd ("arm64: entry: Add macro for reading symbol addresses from the trampoline") into android12-5.10-lts
327f1e7d81 Linux 5.10.106
648895da69 watch_queue: Fix filter limit check
8bb5b72dbd ARM: fix Thumb2 regression with Spectre BHB
6b1249db9e ext4: add check to prevent attempting to resize an fs with sparse_super2
b297cf764d x86/traps: Mark do_int3() NOKPROBE_SYMBOL
29f6f35001 x86/boot: Add setup_indirect support in early_memremap_is_setup_data()
b3444e5b64 x86/boot: Fix memremap of setup_indirect structures
24d268130e watch_queue: Make comment about setting ->defunct more accurate
ec03510e0a watch_queue: Fix lack of barrier/sync/lock between post and read
06ab844439 watch_queue: Free the alloc bitmap when the watch_queue is torn down
880acbb718 watch_queue: Fix the alloc bitmap size to reflect notes allocated
e2b52ca498 watch_queue: Fix to always request a pow-of-2 pipe ring size
2039900aad watch_queue: Fix to release page in ->release()
d729d4e99f watch_queue, pipe: Free watchqueue state after clearing pipe ring
573a3228ca virtio: acknowledge all features before access
bf52b627cf virtio: unexport virtio_finalize_features
8bfb959ea2 arm64: dts: marvell: armada-37xx: Remap IO space to bus address 0x0
1ef5fe3dba riscv: Fix auipc+jalr relocation range checks
a69aa422b4 mmc: meson: Fix usage of meson_mmc_post_req()
0c6eeaf8c1 net: macb: Fix lost RX packet wakeup race in NAPI receive
6d9700b445 staging: gdm724x: fix use after free in gdm_lte_rx()
8c1bc04c8c staging: rtl8723bs: Fix access-point mode deadlock
ab5595b45f fuse: fix pipe buffer lifetime for direct_io
f2c52a4baf ARM: Spectre-BHB: provide empty stub for non-config
f1f5d089fc selftests/memfd: clean up mapping in mfd_fail_write
71013d071b selftest/vm: fix map_fixed_noreplace test failure
8d276f10e8 tracing: Ensure trace buffer is at least 4096 bytes large
ae7597b47d ipv6: prevent a possible race condition with lifetimes
8c0c50e9fc Revert "xen-netback: Check for hotplug-status existence before watching"
625c04b523 Revert "xen-netback: remove 'hotplug-status' once it has served its purpose"
a0e2768fb9 gpio: Return EPROBE_DEFER if gc->to_irq is NULL
65d4e9d130 hwmon: (pmbus) Clear pmbus fault/warning bits after read
d15c9f6e33 net-sysfs: add check for netdevice being present to speed_show
8c023c3039 spi: rockchip: terminate dma transmission when slave abort
889254f98e spi: rockchip: Fix error in getting num-cs property
4fb9be675b selftests/bpf: Add test for bpf_timer overwriting crash
dc1c2b47b5 net: bcmgenet: Don't claim WOL when its not available
b7e4d9ba2d sctp: fix kernel-infoleak for SCTP sockets
3cf533f120 net: phy: DP83822: clear MISR2 register to disable interrupts
21044e679e gianfar: ethtool: Fix refcount leak in gfar_get_ts_info
3a4cd1c51e gpio: ts4900: Do not set DAT and OE together
7702e7e9e3 selftests: pmtu.sh: Kill tcpdump processes launched by subshell.
2b1c85f565 NFC: port100: fix use-after-free in port100_send_complete
1fdabf2cf4 net/mlx5e: Lag, Only handle events from highest priority multipath entry
f3331bc174 net/mlx5: Fix a race on command flush flow
5f1340963b net/mlx5: Fix size field in bufferx_reg struct
e2201ef32f ax25: Fix NULL pointer dereference in ax25_kill_by_device
cc7679079c net: ethernet: lpc_eth: Handle error for clk_enable
b3e4fcb539 net: ethernet: ti: cpts: Handle error for clk_enable
5e42f90d72 tipc: fix incorrect order of state message data sanity check
979b418b96 ethernet: Fix error handling in xemaclite_of_probe
506d61bc1b ice: Fix curr_link_speed advertised speed
852a9e97d3 ice: Rename a couple of variables
b21ffd5469 ice: Remove unnecessary checker loop
875967aff5 ice: Align macro names to the specification
8c613f7cd3 ice: stop disabling VFs due to PF error responses
d9ee2cbff2 i40e: stop disabling VFs due to PF error responses
965070a2b7 ARM: dts: aspeed: Fix AST2600 quad spi group
96b01b8541 net: dsa: mt7530: fix incorrect test in mt753x_phylink_validate()
ed5bb00d86 drm/sun4i: mixer: Fix P010 and P210 format numbers
93223495bc qed: return status of qed_iov_get_link
5bee2ed050 esp: Fix BEET mode inter address family tunneling on GSO
16386479ef net: qlogic: check the return value of dma_alloc_coherent() in qed_vf_hw_prepare()
33c74f8085 isdn: hfcpci: check the return value of dma_set_mask() in setup_hw()
cca9d5035b virtio-blk: Don't use MAX_DISCARD_SEGMENTS if max_discard_seg is zero
a3d5fcc6cf mISDN: Fix memory leak in dsp_pipeline_build()
f97ad179d1 mISDN: Remove obsolete PIPELINE_DEBUG debugging information
2de76d37d4 tipc: fix kernel panic when enabling bearer
ea3a5e6df5 arm64: dts: armada-3720-turris-mox: Add missing ethernet0 alias
2c6a75ea32 HID: vivaldi: fix sysfs attributes leak
2a18a38cbc clk: qcom: gdsc: Add support to update GDSC transition delay
0d6882dd15 ARM: boot: dts: bcm2711: Fix HVS register range
5c5685cc64 Merge 7ae8127e41 ("arm64: Add HWCAP for self-synchronising virtual counter") into android12-5.10-lts
19787ca417 Merge b19eaa004f ("arm64: Add Cortex-A510 CPU part definition") into android12-5.10-lts
199789221d Merge fc8070a9c5 ("arm64: Add Neoverse-N2, Cortex-A710 CPU part definition") into android-mainline
f14cf58208 UPSTREAM: ARM: fix Thumb2 regression with Spectre BHB
74562af594 UPSTREAM: ARM: Spectre-BHB: provide empty stub for non-config
b0ff4e14b1 UPSTREAM: ARM: fix build warning in proc-v7-bugs.c
f3ec5e6124 UPSTREAM: ARM: Do not use NOCROSSREFS directive with ld.lld
5c1f913cd2 UPSTREAM: ARM: fix co-processor register typo
4c5218ead0 UPSTREAM: ARM: fix build error when BPF_SYSCALL is disabled
7ab81873bd Merge 302754d023 ("ARM: include unprivileged BPF status in Spectre V2 reporting") into android12-5.10-lts
d221da1d6f Merge d04937ae94 ("x86/speculation: Warn about eIBRS + LFENCE + Unprivileged eBPF + SMT") into android12-5.10-lts
0773736e48 Merge 5.10.104 into android12-5.10-lts
56d625a4ce ANDROID: fix up rndis ABI breakage
67c781d938 Linux 5.10.105
561e91e5fe Revert "ACPI: PM: s2idle: Cancel wakeup before dispatching EC GPE"
206c8e271b xen/netfront: react properly to failing gnttab_end_foreign_access_ref()
39c00d0928 xen/gnttab: fix gnttab_end_foreign_access() without page specified
c4b16486d6 xen/pvcalls: use alloc/free_pages_exact()
8357d75bfd xen/9p: use alloc/free_pages_exact()
17f01b7206 xen: remove gnttab_query_foreign_access()
5f36ae75b8 xen/gntalloc: don't use gnttab_query_foreign_access()
3047255182 xen/scsifront: don't use gnttab_query_foreign_access() for mapped status
f6690dd944 xen/netfront: don't use gnttab_query_foreign_access() for mapped status
96219af4e5 xen/blkfront: don't use gnttab_query_foreign_access() for mapped status
3d81e85f30 xen/grant-table: add gnttab_try_end_foreign_access()
5c600371b8 xen/xenbus: don't let xenbus_grant_ring() remove grants in error case
b65b87e718 arm64: proton-pack: Include unprivileged eBPF status in Spectre v2 mitigation reporting
90f59cc2f2 ARM: fix build warning in proc-v7-bugs.c
551717cf3b arm64: Use the clearbhb instruction in mitigations
8c4192d126 ARM: Do not use NOCROSSREFS directive with ld.lld
38c26bdb3c KVM: arm64: Allow SMCCC_ARCH_WORKAROUND_3 to be discovered and migrated
1749b553d7 ARM: fix co-processor register typo
e192c8baa6 arm64: Mitigate spectre style branch history side channels
a330601c63 ARM: fix build error when BPF_SYSCALL is disabled
192023e6ba KVM: arm64: Allow indirect vectors to be used without SPECTRE_V3A
13a807a0a0 arm64: proton-pack: Report Spectre-BHB vulnerabilities as part of Spectre-v2
56cf5326bd arm64: entry: Add macro for reading symbol addresses from the trampoline
1f63326a52 arm64: Add percpu vectors for EL1
3f21b7e355 arm64: entry: Add vectors that have the bhb mitigation sequences
4937955296 arm64: entry: Add non-kpti __bp_harden_el1_vectors for mitigations
26211252c1 arm64: entry: Allow the trampoline text to occupy multiple pages
73ee716a1f arm64: entry: Make the kpti trampoline's kpti sequence optional
8c691e5308 arm64: entry: Move trampoline macros out of ifdef'd section
e550250632 arm64: entry: Don't assume tramp_vectors is the start of the vectors
5275fb5ea5 arm64: entry: Allow tramp_alias to access symbols after the 4K boundary
bda8960281 arm64: entry: Move the trampoline data page before the text page
d93b25a665 arm64: entry: Free up another register on kpti's tramp_exit path
7ae8127e41 arm64: Add HWCAP for self-synchronising virtual counter
b19eaa004f arm64: Add Cortex-A510 CPU part definition
fc8070a9c5 arm64: Add Neoverse-N2, Cortex-A710 CPU part definition
5242d6971e arm64: entry: Make the trampoline cleanup optional
8617156931 arm64: Add Cortex-X2 CPU part definition
7048a21086 arm64: spectre: Rename spectre_v4_patch_fw_mitigation_conduit
dc5b630c0d arm64: entry.S: Add ventry overflow sanity checks
97d8bdf331 arm64: cpufeature: add HWCAP for FEAT_RPRES
162aa002ec arm64: cpufeature: add HWCAP for FEAT_AFP
dbcfa98539 arm64: add ID_AA64ISAR2_EL1 sys register
302754d023 ARM: include unprivileged BPF status in Spectre V2 reporting
d04937ae94 x86/speculation: Warn about eIBRS + LFENCE + Unprivileged eBPF + SMT
f3c12fc53e arm64: cputype: Add CPU implementor & types for the Apple M1 cores
3f9c958e35 ARM: Spectre-BHB workaround
cc9e3e55bd x86/speculation: Warn about Spectre v2 LFENCE mitigation
29d9b56df1 ARM: use LOADADDR() to get load address of sections
e335384560 x86/speculation: Update link to AMD speculation whitepaper
46deb22468 ARM: early traps initialisation
2fdf67a1d2 x86/speculation: Use generic retpoline by default on AMD
b7f1e73c4d ARM: report Spectre v2 status through sysfs
afc2d635b5 x86/speculation: Include unprivileged eBPF status in Spectre v2 mitigation reporting
071e8b69d7 Documentation/hw-vuln: Update spectre doc
a6a119d647 x86/speculation: Add eIBRS + Retpoline options
f38774bb6e x86/speculation: Rename RETPOLINE_AMD to RETPOLINE_LFENCE
206cfe2dac x86,bugs: Unconditionally allow spectre_v2=retpoline,amd
97581b56b5 Linux 5.10.104
dbbe09d953 hamradio: fix macro redefine warning
dcd03efd7e Revert "xfrm: xfrm_state_mtu should return at least 1280 for ipv6"
292e1c88b8 btrfs: add missing run of delayed items after unlink during log replay
41712c5fa5 btrfs: qgroup: fix deadlock between rescan worker and remove qgroup
6e0319e770 btrfs: fix lost prealloc extents beyond eof after full fsync
827172ffa9 tracing: Fix return value of __setup handlers
78059b1cfc tracing/histogram: Fix sorting on old "cpu" value
0e188fde82 HID: add mapping for KEY_ALL_APPLICATIONS
f276ea5035 HID: add mapping for KEY_DICTATE
3b8f2a7aed Input: samsung-keypad - properly state IOMEM dependency
a621ae6394 Input: elan_i2c - fix regulator enable count imbalance after suspend/resume
1397bbcd81 Input: elan_i2c - move regulator_[en|dis]able() out of elan_[en|dis]able_power()
988f4f29cc net: dcb: disable softirqs in dcbnl_flush_dev()
6828da5dea drm/amdgpu: fix suspend/resume hang regression
f5e496ef73 nl80211: Handle nla_memdup failures in handle_nan_filter
64e4305a03 iavf: Refactor iavf state machine tracking
e6bc597fbc net: chelsio: cxgb3: check the return value of pci_find_capability()
320980b249 ibmvnic: complete init_done on transport events
86027004bb ARM: tegra: Move panels to AUX bus
fbb810825a soc: fsl: qe: Check of ioremap return value
2824f6939e soc: fsl: guts: Add a missing memory allocation failure check
3afe488d5c soc: fsl: guts: Revert commit 3c0d64e867
4470913079 ARM: dts: Use 32KiHz oscillator on devkit8000
298f6fae54 ARM: dts: switch timer config to common devkit8000 devicetree
8b20c1999d s390/extable: fix exception table sorting
49aa9c9c7f memfd: fix F_SEAL_WRITE after shmem huge page allocated
6acbc88752 ibmvnic: free reset-work-item when flushing
9d8a11d74d igc: igc_write_phy_reg_gpy: drop premature return
223744f521 pinctrl: sunxi: Use unique lockdep classes for IRQs
2851b76e5f selftests: mlxsw: tc_police_scale: Make test more robust
85bf489c5c ARM: 9182/1: mmu: fix returns from early_param() and __setup() functions
6b63410490 ARM: Fix kgdb breakpoint for Thumb2
fefe4cb4a6 igc: igc_read_phy_reg_gpy: drop premature return
0632854fb1 arm64: dts: rockchip: Switch RK3399-Gru DP to SPDIF output
43eaf1b178 can: gs_usb: change active_channels's type from atomic_t to u8
daaed6ced8 ASoC: cs4265: Fix the duplicated control name
8b8ac465bf firmware: arm_scmi: Remove space in MODULE_ALIAS name
667df6fe3e efivars: Respect "block" flag in efivar_entry_set_safe()
283c37e542 ixgbe: xsk: change !netif_carrier_ok() handling in ixgbe_xmit_zc()
5f394102ee net: arcnet: com20020: Fix null-ptr-deref in com20020pci_probe()
92b791771a ibmvnic: register netdev after init of adapter
6e0f986032 net: sxgbe: fix return value of __setup handler
e1a82db1eb iavf: Fix missing check for running netdev
c9a066fe45 mac80211: treat some SAE auth steps as final
e6d7f57f91 net: stmmac: fix return value of __setup handler
fa65989a48 mac80211: fix forwarded mesh frames AC & queue selection
dcc3423c1d ia64: ensure proper NUMA distance and possible map initialization
1312ef5ad0 sched/topology: Fix sched_domain_topology_level alloc in sched_init_numa()
d753aecb3d sched/topology: Make sched_init_numa() use a set for the deduplicating sort
05ae1f0fe9 ice: fix concurrent reset and removal of VFs
41edeeaae5 ice: Fix race conditions between virtchnl handling and VF ndo ops
0c145262ac rcu/nocb: Fix missed nocb_timer requeue
9bb7237cc7 net/smc: fix unexpected SMC_CLC_DECL_ERR_REGRMB error cause by server
d7eb662625 net/smc: fix unexpected SMC_CLC_DECL_ERR_REGRMB error generated by client
2e8d465b83 net/smc: fix connection leak
6a8a4dc2a2 net: dcb: flush lingering app table entries for unregistered devices
f4c63b24de net: ipv6: ensure we call ipv6_mc_down() at most once
a9c4a74ad5 batman-adv: Don't expect inter-netns unique iflink indices
3dae11d21f batman-adv: Request iflink once in batadv_get_real_netdevice
dcf10d78ff batman-adv: Request iflink once in batadv-on-batadv check
81f817f3e5 netfilter: nf_queue: handle socket prefetch
4d05239203 netfilter: nf_queue: fix possible use-after-free
3b9ba964f7 netfilter: nf_queue: don't assume sk is full socket
4e178ed14b net: fix up skbs delta_truesize in UDP GRO frag_list
eb5e444fe3 e1000e: Correct NVM checksum verification flow
b53d4bfd1a xfrm: enforce validity of offload input flags
2f0e6d80e8 xfrm: fix the if_id check in changelink
24efaae03b bpf, sockmap: Do not ignore orig_len parameter
8b0142c414 netfilter: fix use-after-free in __nf_register_net_hook()
4952faa77d xfrm: fix MTU regression
e93f2be33d mm: Consider __GFP_NOWARN flag for oversized kvmalloc() calls
912186db09 ntb: intel: fix port config status offset for SPR
1c0b51e62a thermal: core: Fix TZ_GET_TRIP NULL pointer dereference
a1753d5c29 xen/netfront: destroy queues before real_num_tx_queues is zeroed
ce41d80391 drm/i915: s/JSP2/ICP2/ PCH
61a895da48 iommu/amd: Recover from event log overflow
6951a58881 ASoC: ops: Shift tested values in snd_soc_put_volsw() by +min
dd9dd24fd7 riscv: Fix config KASAN && DEBUG_VIRTUAL
7211aab288 riscv: Fix config KASAN && SPARSEMEM && !SPARSE_VMEMMAP
00fb385f0a riscv/efi_stub: Fix get_boot_hartid_from_fdt() return value
336872601c ALSA: intel_hdmi: Fix reference to PCM buffer address
e57dfaf66f tracing: Add ustring operation to filtering string pointers
4a9d2390f3 drm/amdgpu: check vm ready by amdgpu_vm->evicting flag
67e25eb1b4 ata: pata_hpt37x: fix PCI clock detection
335f11ff74 serial: stm32: prevent TDR register overwrite when sending x_char
c999c5927e tracing: Add test for user space strings when filtering on string pointers
db36a94ed6 exfat: fix i_blocks for files truncated over 4 GiB
1b810d5cb6 exfat: reuse exfat_inode_info variable instead of calling EXFAT_I()
fdd64084e4 usb: gadget: clear related members when goto fail
c13159a588 usb: gadget: don't release an existing dev->buf
00d5ac05af net: usb: cdc_mbim: avoid altsetting toggling for Telit FN990
16f903afba i2c: qup: allow COMPILE_TEST
57c333ad8c i2c: cadence: allow COMPILE_TEST
9d6285e632 dmaengine: shdma: Fix runtime PM imbalance on error
37b06d5ebf selftests/seccomp: Fix seccomp failure by adding missing headers
df9db1a2af cifs: fix double free race when mount fails in cifs_get_root()
e3850e211d tipc: fix a bit overflow in tipc_crypto_key_rcv()
6d4985b8a0 KVM: arm64: vgic: Read HW interrupt pending state from the HW
5d4b00e053 Input: clear BTN_RIGHT/MIDDLE on buttonpads
6e7015d982 regulator: core: fix false positive in regulator_late_cleanup()
467d664e5f ASoC: rt5682: do not block workqueue if card is unbound
0b050b7a0d ASoC: rt5668: do not block workqueue if card is unbound
11956c6eeb i2c: bcm2835: Avoid clock stretching timeouts
13f0ea8d11 mac80211_hwsim: initialize ieee80211_tx_info at hw_scan_work
46f6d66219 mac80211_hwsim: report NOACK frames in tx_status
d172937367 Merge 5.10.103 into android12-5.10-lts
915a747ac7 Linux 5.10.103
78706b051a memblock: use kfree() to release kmalloced memblock regions
4185b788d3 gpio: tegra186: Fix chip_data type confusion
bb2e0a7723 tty: n_gsm: fix deadlock in gsmtty_open()
e4c8cb95d0 tty: n_gsm: fix wrong tty control line for flow control
1f0641dd0b tty: n_gsm: fix NULL pointer access due to DLCI release
1e35cb9e12 tty: n_gsm: fix proper link termination after failed open
90b47e617f tty: n_gsm: fix encoding of control signal octet bit DV
9e2dbc31e3 riscv: fix oops caused by irqsoff latency tracer
e098933866 thermal: int340x: fix memory leak in int3400_notify()
5b1cef5798 RDMA/cma: Do not change route.addr.src_addr outside state checks
8fe4da5524 driver core: Free DMA range map when device is released
2148247643 xhci: Prevent futile URB re-submissions due to incorrect return value.
0b0a229da1 xhci: re-initialize the HC during resume if HCE was set
328faee6d4 usb: dwc3: gadget: Let the interrupt handler disable bottom halves.
e57bdee866 usb: dwc3: pci: Fix Bay Trail phy GPIO mappings
99b2425d91 usb: dwc2: drd: fix soft connect when gadget is unconfigured
c786688037 USB: serial: option: add Telit LE910R1 compositions
220ba174f1 USB: serial: option: add support for DW5829e
3a1dd56e56 tracefs: Set the group ownership in apply_options() not parse_options()
bfa8ffbaaa USB: gadget: validate endpoint index for xilinx udc
4ce247af3f usb: gadget: rndis: add spinlock for rndis response list
ddc254fc88 Revert "USB: serial: ch341: add new Product ID for CH341A"
d3fce1b6bd ata: pata_hpt37x: disable primary channel on HPT371
18701d8afa sc16is7xx: Fix for incorrect data being transmitted
d5ddd7343a iio: Fix error handling for PM
eabcc609cb iio: imu: st_lsm6dsx: wait for settling time in st_lsm6dsx_read_oneshot
b8d411a962 iio: adc: ad7124: fix mask used for setting AIN_BUFP & AIN_BUFM bits
1aa12ecfdc iio: adc: men_z188_adc: Fix a resource leak in an error handling path
afbeee13be tracing: Have traceon and traceoff trigger honor the instance
99eb8d6941 RDMA/ib_srp: Fix a deadlock
a7ab53d3c2 configfs: fix a race in configfs_{,un}register_subsystem()
0ecd3e35d7 RDMA/rtrs-clt: Move free_permit from free_clt to rtrs_clt_close
b0ecf9e594 RDMA/rtrs-clt: Kill wait_for_inflight_permits
8260f1800f RDMA/rtrs-clt: Fix possible double free in error case
dc64aa4c7d regmap-irq: Update interrupt clear register for proper reset
2efece1368 spi: spi-zynq-qspi: Fix a NULL pointer dereference in zynq_qspi_exec_mem_op()
67819b983e net/mlx5e: kTLS, Use CHECKSUM_UNNECESSARY for device-offloaded packets
be55d3e76c net/mlx5: Fix wrong limitation of metadata match on ecpf
8d617110d7 net/mlx5: Fix possible deadlock on rule deletion
1c59128955 udp_tunnel: Fix end of loop test in udp_tunnel_nic_unregister()
a184f4dd9b surface: surface3_power: Fix battery readings on batteries without a serial number
91f56a8527 net/smc: Use a mutex for locking "struct smc_pnettable"
7e9880e81d netfilter: nf_tables: fix memory leak during stateful obj update
af4bc921d3 nfp: flower: Fix a potential leak in nfp_tunnel_add_shared_mac()
58a6d5f24f net: Force inlining of checksum functions in net/checksum.h
550d98ab30 net: ll_temac: check the return value of devm_kmalloc()
0fc1847359 net/sched: act_ct: Fix flow table lookup after ct clear or switching zones
bc8f768af3 net/mlx5e: Fix wrong return value on ioctl EEPROM query failure
fd020eaaa2 drm/edid: Always set RGB444
1df9d552fe openvswitch: Fix setting ipv6 fields causing hw csum failure
dac2490d9e gso: do not skip outer ip header in case of ipip and net_failover
b692d5dc6f tipc: Fix end of loop tests for list_for_each_entry()
c5722243d0 net: __pskb_pull_tail() & pskb_carve_frag_list() drop_monitor friends
4a93c65946 io_uring: add a schedule point in io_add_buffers()
7ef94bfb08 bpf: Add schedule points in batch ops
4f5d47e6b4 selftests: bpf: Check bpf_msg_push_data return value
d0caa7218d bpf: Do not try bpf_msg_push_data with len 0
962b2a3188 hwmon: Handle failure to register sensor with thermal zone correctly
d8b78314c5 bnxt_en: Fix active FEC reporting to ethtool
7e1eae5d1a bnx2x: fix driver load from initrd
51e96061c6 perf data: Fix double free in perf_session__delete()
5419b5be88 ping: remove pr_err from ping_lookup
5da17865c7 optee: use driver internal tee_context for some rpc
eb35461384 tee: export teedev_open() and teedev_close_context()
bae7fc6f0d x86/fpu: Correct pkru/xstate inconsistency
68f19845f5 netfilter: nf_tables_offload: incorrect flow offload action array size
69560efa00 CDC-NCM: avoid overflow in sanity checking
2aeba1ea7c USB: zaurus: support another broken Zaurus
4f5f5411f0 sr9700: sanity check for packet length
55eec5c630 drm/i915: Correctly populate use_sagv_wm for all pipes
ff9134882d drm/amdgpu: disable MMHUB PG for Picasso
72fdfc75d4 KVM: x86/mmu: make apf token non-zero to fix bug
646b532f32 parisc/unaligned: Fix ldw() and stw() unalignment handlers
397b5433f7 parisc/unaligned: Fix fldd and fstd unaligned handlers on 32-bit kernel
698dc7d13c vhost/vsock: don't check owner in vhost_vsock_stop() while releasing
84e303b4d5 clk: jz4725b: fix mmc0 clock gating
72a5b01875 btrfs: tree-checker: check item_size for dev_item
5c967dd073 btrfs: tree-checker: check item_size for inode_item
fcec42dd28 cgroup/cpuset: Fix a race between cpuset_attach() and cpu hotplug
e1b86e7f5c Merge branch 'android12-5.10' into `android12-5.10-lts`
cbfab5c59c Revert "ipv6: per-netns exclusive flowlabel checks"
79553fad5c Merge 5.10.102 into android12-5.10-lts
47667effb7 Linux 5.10.102
6062d1267f lockdep: Correct lock_classes index mapping
f333c1916f i2c: brcmstb: fix support for DSL and CM variants
9fee985f9a copy_process(): Move fd_install() out of sighand->siglock critical section
e3fdbc40b7 i2c: qcom-cci: don't put a device tree node before i2c_add_adapter()
b5b2a92117 i2c: qcom-cci: don't delete an unregistered adapter
3b6d25d1b6 dmaengine: sh: rcar-dmac: Check for error num after dma_set_max_seg_size
2c35c95d36 dmaengine: stm32-dmamux: Fix PM disable depth imbalance in stm32_dmamux_probe
4f907b6eb7 dmaengine: sh: rcar-dmac: Check for error num after setting mask
797b380f07 net: sched: limit TC_ACT_REPEAT loops
595c259f75 EDAC: Fix calculation of returned address and next offset in edac_align_ptr()
f6ce4e3289 scsi: lpfc: Fix pt2pt NVMe PRLI reject LOGO loop
3680b2b810 kconfig: fix failing to generate auto.conf
b6787e284d net: macb: Align the dma and coherent dma masks
439171a291 net: usb: qmi_wwan: Add support for Dell DW5829e
15616ba17d tracing: Fix tp_printk option related with tp_printk_stop_on_boot
5a253a23d9 drm/rockchip: dw_hdmi: Do not leave clock enabled in error case
1e7433fb95 xprtrdma: fix pointer derefs in error cases of rpcrdma_ep_create
a21f472fb5 soc: aspeed: lpc-ctrl: Block error printing on probe defer cases
fecb05b1ce ata: libata-core: Disable TRIM on M88V29
b19ec7afa9 lib/iov_iter: initialize "flags" in new pipe_buffer
3045532278 kconfig: let 'shell' return enough output for deep path names
e05dde47f5 selftests: fixup build warnings in pidfd / clone3 tests
531a56c2e0 pidfd: fix test failure due to stack overflow on some arches
429ef36c4f arm64: dts: meson-g12: drop BL32 region from SEI510/SEI610
1415f22ee5 arm64: dts: meson-g12: add ATF BL32 reserved-memory region
605080f19e arm64: dts: meson-gx: add ATF BL32 reserved-memory region
eefb68794f netfilter: conntrack: don't refresh sctp entries in closed state
1ab4824857 irqchip/sifive-plic: Add missing thead,c900-plic match string
98bc06c46d phy: usb: Leave some clocks running during suspend
717f2fa858 ARM: OMAP2+: adjust the location of put_device() call in omapdss_init_of
6932353af7 ARM: OMAP2+: hwmod: Add of_node_put() before break
521dcc107e NFS: Don't set NFS_INO_INVALID_XATTR if there is no xattr cache
fb00319afb KVM: x86/pmu: Use AMD64_RAW_EVENT_MASK for PERF_TYPE_RAW
0ee4bb8ce8 KVM: x86/pmu: Don't truncate the PerfEvtSeln MSR when creating a perf event
99cd2a0437 KVM: x86/pmu: Refactoring find_arch_event() to pmc_perf_hw_id()
91d8866ca5 Drivers: hv: vmbus: Fix memory leak in vmbus_add_channel_kobj
a176d559e8 mtd: rawnand: brcmnand: Fixed incorrect sub-page ECC status
1a49b1b0b0 mtd: rawnand: qcom: Fix clock sequencing in qcom_nandc_probe()
8c848744c1 tty: n_tty: do not look ahead for EOL character past the end of the buffer
8daa0436ce NFS: Do not report writeback errors in nfs_getattr()
f9b7385c0f NFS: LOOKUP_DIRECTORY is also ok with symlinks
598dbaf74b block/wbt: fix negative inflight counter when remove scsi device
dc6faa0ede ASoC: tas2770: Insert post reset delay
9dcedbe943 KVM: SVM: Never reject emulation due to SMAP errata for !SEV guests
a4eeeaca50 mtd: rawnand: gpmi: don't leak PM reference in error path
fb26219b40 powerpc/lib/sstep: fix 'ptesync' build error
54f76366cd ASoC: ops: Fix stereo change notifications in snd_soc_put_volsw_range()
0df1badfdf ASoC: ops: Fix stereo change notifications in snd_soc_put_volsw()
1ef76832fe ALSA: hda: Fix missing codec probe on Shenker Dock 15
c72c3b597a ALSA: hda: Fix regression on forced probe mask option
63b1602c2f ALSA: hda/realtek: Fix deadlock by COEF mutex
b6a5e8f45f ALSA: hda/realtek: Add quirk for Legion Y9000X 2019
67de71b943 selftests/exec: Add non-regular to TEST_GEN_PROGS
d3018a1962 perf bpf: Defer freeing string after possible strlen() on it
016e3ca9c5 dpaa2-eth: Initialize mutex used in one step timestamping path
50f3b00d4c libsubcmd: Fix use-after-free for realloc(..., 0)
ffa8df4f0e bonding: fix data-races around agg_select_timer
d9bd9d4c60 net_sched: add __rcu annotation to netdev->qdisc
877a05672f drop_monitor: fix data-race in dropmon_net_event / trace_napi_poll_hit
a0e004e620 bonding: force carrier update when releasing slave
8dec3c4e73 ping: fix the dif and sdif check in ping_lookup
6793a9b028 net: ieee802154: ca8210: Fix lifs/sifs periods
f48bd34137 net: dsa: lantiq_gswip: fix use after free in gswip_remove()
d9b2203e5a net: dsa: lan9303: fix reset on probe
4f523f15e5 ipv6: per-netns exclusive flowlabel checks
100344200a netfilter: nft_synproxy: unregister hooks on init error path
26931971db selftests: netfilter: fix exit value for nft_concat_range
b26ea3f6b7 iwlwifi: pcie: gen2: fix locking when "HW not ready"
8867f99379 iwlwifi: pcie: fix locking when "HW not ready"
f3c1910257 drm/i915/gvt: Make DRM_I915_GVT depend on X86
87cd1bbd66 vsock: remove vsock from connected table when connect is interrupted by a signal
eb7bf11e8e drm/i915/opregion: check port number bounds for SWSCI display power state
5564d83ebc drm/radeon: Fix backlight control on iMac 12,1
008508c16a iwlwifi: fix use-after-free
44b81136e8 kbuild: lto: Merge module sections if and only if CONFIG_LTO_CLANG is enabled
8b53e5f737 kbuild: lto: merge module sections
45102b538a random: wake up /dev/random writers after zap
143aaf79ba gcc-plugins/stackleak: Use noinstr in favor of notrace
de55891e16 Revert "module, async: async_synchronize_full() on module init iff async is used"
3c958dbcba x86/Xen: streamline (and fix) PV CPU enumeration
e76d0a9692 drm/amdgpu: fix logic inversion in check
324f5bdc52 nvme-rdma: fix possible use-after-free in transport error_recovery work
e192184cf8 nvme-tcp: fix possible use-after-free in transport error_recovery work
0ead57ceb2 nvme: fix a possible use-after-free in controller reset during load
fe9ac3eaa2 scsi: pm8001: Fix use-after-free for aborted SSP/STP sas_task
d872e7b5fe scsi: pm8001: Fix use-after-free for aborted TMF sas_task
1e73f5cfc1 quota: make dquot_quota_sync return errors from ->sync_fs
c405640aad vfs: make freeze_super abort when sync_filesystem returns error
b9a229fd48 ax25: improve the incomplete fix to avoid UAF and NPD bugs
139fce2992 selftests: skip mincore.check_file_mmap when fs lacks needed support
204a2390da selftests: openat2: Skip testcases that fail with EOPNOTSUPP
2be48bfac7 selftests: openat2: Add missing dependency in Makefile
74a30666b4 selftests: openat2: Print also errno in failure messages
bfc84cfd90 selftests/zram: Adapt the situation that /dev/zram0 is being used
f0eba714c1 selftests/zram01.sh: Fix compression ratio calculation
7bb704b69f selftests/zram: Skip max_comp_streams interface on newer kernel
0fd484644c net: ieee802154: at86rf230: Stop leaking skb's
0c18a75193 kselftest: signal all child processes
1136141f19 selftests: rtc: Increase test timeout so that all tests run
79175b6ee6 platform/x86: ISST: Fix possible circular locking dependency detected
066c905ed0 platform/x86: touchscreen_dmi: Add info for the RWC NANOTE P8 AY07J 2-in-1
0b17d4b51c btrfs: send: in case of IO error log it
78a68bbebd parisc: Add ioread64_lo_hi() and iowrite64_lo_hi()
ade1077c7f PCI: hv: Fix NUMA node assignment when kernel boots with custom NUMA topology
254090925e mm: don't try to NUMA-migrate COW pages that have other uses
ab2b4e65a1 mmc: block: fix read single on recovery logic
7756716872 parisc: Fix sglist access in ccio-dma.c
f8f519d7df parisc: Fix data TLB miss in sba_unmap_sg
4d569b959e parisc: Drop __init from map_pages declaration
8e3f9a098e serial: parisc: GSC: fix build when IOSAPIC is not set
fe383750d4 Revert "svm: Add warning message for AVIC IPI invalid target"
126382b556 HID:Add support for UGTABLET WP5540
f100e758ce scsi: lpfc: Fix mailbox command failure during driver initialization
4578b979ef can: isotp: add SF_BROADCAST support for functional addressing
5d42865fc3 can: isotp: prevent race between isotp_bind() and isotp_setsockopt()
db3f3636e4 fs/proc: task_mmu.c: don't read mapcount for migration entry
0849f83e47 fget: clarify and improve __fget_files() implementation
657991fb06 rcu: Do not report strict GPs for outgoing CPUs
8c8385972e mm: memcg: synchronize objcg lists with a dedicated spinlock
d0f4aa2d97 drm/nouveau/pmu/gm200-: use alternate falcon reset sequence
add227a8d8 Merge branch 'android12-5.10' into `android12-5.10-lts`

The .xml abi file was also updated due to changes required from the -lts
branch that were merged there:

Leaf changes summary: 1 artifact changed
Changed leaf types summary: 1 leaf type changed
Removed/Changed/Added functions summary: 0 Removed, 0 Changed, 0 Added function
Removed/Changed/Added variables summary: 0 Removed, 0 Changed, 0 Added variable

'struct snd_pcm_runtime at pcm.h:344:1' changed:
  type size changed from 6144 to 6592 (in bits)
  2 data member insertions:
    'mutex buffer_mutex', at offset 6144 (in bits) at pcm.h:432:1
    'atomic_t buffer_accessing', at offset 6528 (in bits) at pcm.h:433:1
  114 impacted interfaces

Change-Id: Ie9262400472eda3e30d1ef26738df1d5dd4c319d
Signed-off-by: Greg Kroah-Hartman <gregkh@google.com>
2022-05-27 09:24:14 -07:00

6376 lines
157 KiB
C

// SPDX-License-Identifier: GPL-2.0-or-later
/*
* Routines having to do with the 'struct sk_buff' memory handlers.
*
* Authors: Alan Cox <alan@lxorguk.ukuu.org.uk>
* Florian La Roche <rzsfl@rz.uni-sb.de>
*
* Fixes:
* Alan Cox : Fixed the worst of the load
* balancer bugs.
* Dave Platt : Interrupt stacking fix.
* Richard Kooijman : Timestamp fixes.
* Alan Cox : Changed buffer format.
* Alan Cox : destructor hook for AF_UNIX etc.
* Linus Torvalds : Better skb_clone.
* Alan Cox : Added skb_copy.
* Alan Cox : Added all the changed routines Linus
* only put in the headers
* Ray VanTassle : Fixed --skb->lock in free
* Alan Cox : skb_copy copy arp field
* Andi Kleen : slabified it.
* Robert Olsson : Removed skb_head_pool
*
* NOTE:
* The __skb_ routines should be called with interrupts
* disabled, or you better be *real* sure that the operation is atomic
* with respect to whatever list is being frobbed (e.g. via lock_sock()
* or via disabling bottom half handlers, etc).
*/
/*
* The functions in this file will not compile correctly with gcc 2.4.x
*/
#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
#include <linux/module.h>
#include <linux/types.h>
#include <linux/kernel.h>
#include <linux/mm.h>
#include <linux/interrupt.h>
#include <linux/in.h>
#include <linux/inet.h>
#include <linux/slab.h>
#include <linux/tcp.h>
#include <linux/udp.h>
#include <linux/sctp.h>
#include <linux/netdevice.h>
#ifdef CONFIG_NET_CLS_ACT
#include <net/pkt_sched.h>
#endif
#include <linux/string.h>
#include <linux/skbuff.h>
#include <linux/splice.h>
#include <linux/cache.h>
#include <linux/rtnetlink.h>
#include <linux/init.h>
#include <linux/scatterlist.h>
#include <linux/errqueue.h>
#include <linux/prefetch.h>
#include <linux/if_vlan.h>
#include <linux/mpls.h>
#include <net/protocol.h>
#include <net/dst.h>
#include <net/sock.h>
#include <net/checksum.h>
#include <net/ip6_checksum.h>
#include <net/xfrm.h>
#include <net/mpls.h>
#include <net/mptcp.h>
#include <linux/uaccess.h>
#include <trace/events/skb.h>
#include <linux/highmem.h>
#include <linux/capability.h>
#include <linux/user_namespace.h>
#include <linux/indirect_call_wrapper.h>
#include <trace/hooks/net.h>
#include "datagram.h"
struct kmem_cache *skbuff_head_cache __ro_after_init;
static struct kmem_cache *skbuff_fclone_cache __ro_after_init;
#ifdef CONFIG_SKB_EXTENSIONS
static struct kmem_cache *skbuff_ext_cache __ro_after_init;
#endif
int sysctl_max_skb_frags __read_mostly = MAX_SKB_FRAGS;
EXPORT_SYMBOL(sysctl_max_skb_frags);
/**
* skb_panic - private function for out-of-line support
* @skb: buffer
* @sz: size
* @addr: address
* @msg: skb_over_panic or skb_under_panic
*
* Out-of-line support for skb_put() and skb_push().
* Called via the wrapper skb_over_panic() or skb_under_panic().
* Keep out of line to prevent kernel bloat.
* __builtin_return_address is not used because it is not always reliable.
*/
static void skb_panic(struct sk_buff *skb, unsigned int sz, void *addr,
const char msg[])
{
pr_emerg("%s: text:%px len:%d put:%d head:%px data:%px tail:%#lx end:%#lx dev:%s\n",
msg, addr, skb->len, sz, skb->head, skb->data,
(unsigned long)skb->tail, (unsigned long)skb->end,
skb->dev ? skb->dev->name : "<NULL>");
BUG();
}
static void skb_over_panic(struct sk_buff *skb, unsigned int sz, void *addr)
{
skb_panic(skb, sz, addr, __func__);
}
static void skb_under_panic(struct sk_buff *skb, unsigned int sz, void *addr)
{
skb_panic(skb, sz, addr, __func__);
}
/*
* kmalloc_reserve is a wrapper around kmalloc_node_track_caller that tells
* the caller if emergency pfmemalloc reserves are being used. If it is and
* the socket is later found to be SOCK_MEMALLOC then PFMEMALLOC reserves
* may be used. Otherwise, the packet data may be discarded until enough
* memory is free
*/
#define kmalloc_reserve(size, gfp, node, pfmemalloc) \
__kmalloc_reserve(size, gfp, node, _RET_IP_, pfmemalloc)
static void *__kmalloc_reserve(size_t size, gfp_t flags, int node,
unsigned long ip, bool *pfmemalloc)
{
void *obj;
bool ret_pfmemalloc = false;
/*
* Try a regular allocation, when that fails and we're not entitled
* to the reserves, fail.
*/
obj = kmalloc_node_track_caller(size,
flags | __GFP_NOMEMALLOC | __GFP_NOWARN,
node);
if (obj || !(gfp_pfmemalloc_allowed(flags)))
goto out;
/* Try again but now we are using pfmemalloc reserves */
ret_pfmemalloc = true;
obj = kmalloc_node_track_caller(size, flags, node);
out:
if (pfmemalloc)
*pfmemalloc = ret_pfmemalloc;
return obj;
}
/* Allocate a new skbuff. We do this ourselves so we can fill in a few
* 'private' fields and also do memory statistics to find all the
* [BEEP] leaks.
*
*/
/**
* __alloc_skb - allocate a network buffer
* @size: size to allocate
* @gfp_mask: allocation mask
* @flags: If SKB_ALLOC_FCLONE is set, allocate from fclone cache
* instead of head cache and allocate a cloned (child) skb.
* If SKB_ALLOC_RX is set, __GFP_MEMALLOC will be used for
* allocations in case the data is required for writeback
* @node: numa node to allocate memory on
*
* Allocate a new &sk_buff. The returned buffer has no headroom and a
* tail room of at least size bytes. The object has a reference count
* of one. The return is the buffer. On a failure the return is %NULL.
*
* Buffers may only be allocated from interrupts using a @gfp_mask of
* %GFP_ATOMIC.
*/
struct sk_buff *__alloc_skb(unsigned int size, gfp_t gfp_mask,
int flags, int node)
{
struct kmem_cache *cache;
struct skb_shared_info *shinfo;
struct sk_buff *skb;
u8 *data;
bool pfmemalloc;
cache = (flags & SKB_ALLOC_FCLONE)
? skbuff_fclone_cache : skbuff_head_cache;
if (sk_memalloc_socks() && (flags & SKB_ALLOC_RX))
gfp_mask |= __GFP_MEMALLOC;
/* Get the HEAD */
skb = kmem_cache_alloc_node(cache, gfp_mask & ~__GFP_DMA, node);
if (!skb)
goto out;
prefetchw(skb);
/* We do our best to align skb_shared_info on a separate cache
* line. It usually works because kmalloc(X > SMP_CACHE_BYTES) gives
* aligned memory blocks, unless SLUB/SLAB debug is enabled.
* Both skb->head and skb_shared_info are cache line aligned.
*/
size = SKB_DATA_ALIGN(size);
size += SKB_DATA_ALIGN(sizeof(struct skb_shared_info));
data = kmalloc_reserve(size, gfp_mask, node, &pfmemalloc);
if (!data)
goto nodata;
/* kmalloc(size) might give us more room than requested.
* Put skb_shared_info exactly at the end of allocated zone,
* to allow max possible filling before reallocation.
*/
size = SKB_WITH_OVERHEAD(ksize(data));
prefetchw(data + size);
/*
* Only clear those fields we need to clear, not those that we will
* actually initialise below. Hence, don't put any more fields after
* the tail pointer in struct sk_buff!
*/
memset(skb, 0, offsetof(struct sk_buff, tail));
/* Account for allocated memory : skb + skb->head */
skb->truesize = SKB_TRUESIZE(size);
skb->pfmemalloc = pfmemalloc;
refcount_set(&skb->users, 1);
skb->head = data;
skb->data = data;
skb_reset_tail_pointer(skb);
skb->end = skb->tail + size;
skb->mac_header = (typeof(skb->mac_header))~0U;
skb->transport_header = (typeof(skb->transport_header))~0U;
/* make sure we initialize shinfo sequentially */
shinfo = skb_shinfo(skb);
memset(shinfo, 0, offsetof(struct skb_shared_info, dataref));
atomic_set(&shinfo->dataref, 1);
if (flags & SKB_ALLOC_FCLONE) {
struct sk_buff_fclones *fclones;
fclones = container_of(skb, struct sk_buff_fclones, skb1);
skb->fclone = SKB_FCLONE_ORIG;
refcount_set(&fclones->fclone_ref, 1);
fclones->skb2.fclone = SKB_FCLONE_CLONE;
}
skb_set_kcov_handle(skb, kcov_common_handle());
out:
return skb;
nodata:
kmem_cache_free(cache, skb);
skb = NULL;
goto out;
}
EXPORT_SYMBOL(__alloc_skb);
/* Caller must provide SKB that is memset cleared */
static struct sk_buff *__build_skb_around(struct sk_buff *skb,
void *data, unsigned int frag_size)
{
struct skb_shared_info *shinfo;
unsigned int size = frag_size ? : ksize(data);
size -= SKB_DATA_ALIGN(sizeof(struct skb_shared_info));
/* Assumes caller memset cleared SKB */
skb->truesize = SKB_TRUESIZE(size);
refcount_set(&skb->users, 1);
skb->head = data;
skb->data = data;
skb_reset_tail_pointer(skb);
skb->end = skb->tail + size;
skb->mac_header = (typeof(skb->mac_header))~0U;
skb->transport_header = (typeof(skb->transport_header))~0U;
/* make sure we initialize shinfo sequentially */
shinfo = skb_shinfo(skb);
memset(shinfo, 0, offsetof(struct skb_shared_info, dataref));
atomic_set(&shinfo->dataref, 1);
skb_set_kcov_handle(skb, kcov_common_handle());
return skb;
}
/**
* __build_skb - build a network buffer
* @data: data buffer provided by caller
* @frag_size: size of data, or 0 if head was kmalloced
*
* Allocate a new &sk_buff. Caller provides space holding head and
* skb_shared_info. @data must have been allocated by kmalloc() only if
* @frag_size is 0, otherwise data should come from the page allocator
* or vmalloc()
* The return is the new skb buffer.
* On a failure the return is %NULL, and @data is not freed.
* Notes :
* Before IO, driver allocates only data buffer where NIC put incoming frame
* Driver should add room at head (NET_SKB_PAD) and
* MUST add room at tail (SKB_DATA_ALIGN(skb_shared_info))
* After IO, driver calls build_skb(), to allocate sk_buff and populate it
* before giving packet to stack.
* RX rings only contains data buffers, not full skbs.
*/
struct sk_buff *__build_skb(void *data, unsigned int frag_size)
{
struct sk_buff *skb;
skb = kmem_cache_alloc(skbuff_head_cache, GFP_ATOMIC);
if (unlikely(!skb))
return NULL;
memset(skb, 0, offsetof(struct sk_buff, tail));
return __build_skb_around(skb, data, frag_size);
}
/* build_skb() is wrapper over __build_skb(), that specifically
* takes care of skb->head and skb->pfmemalloc
* This means that if @frag_size is not zero, then @data must be backed
* by a page fragment, not kmalloc() or vmalloc()
*/
struct sk_buff *build_skb(void *data, unsigned int frag_size)
{
struct sk_buff *skb = __build_skb(data, frag_size);
if (skb && frag_size) {
skb->head_frag = 1;
if (page_is_pfmemalloc(virt_to_head_page(data)))
skb->pfmemalloc = 1;
}
return skb;
}
EXPORT_SYMBOL(build_skb);
/**
* build_skb_around - build a network buffer around provided skb
* @skb: sk_buff provide by caller, must be memset cleared
* @data: data buffer provided by caller
* @frag_size: size of data, or 0 if head was kmalloced
*/
struct sk_buff *build_skb_around(struct sk_buff *skb,
void *data, unsigned int frag_size)
{
if (unlikely(!skb))
return NULL;
skb = __build_skb_around(skb, data, frag_size);
if (skb && frag_size) {
skb->head_frag = 1;
if (page_is_pfmemalloc(virt_to_head_page(data)))
skb->pfmemalloc = 1;
}
return skb;
}
EXPORT_SYMBOL(build_skb_around);
#define NAPI_SKB_CACHE_SIZE 64
struct napi_alloc_cache {
struct page_frag_cache page;
unsigned int skb_count;
void *skb_cache[NAPI_SKB_CACHE_SIZE];
};
static DEFINE_PER_CPU(struct page_frag_cache, netdev_alloc_cache);
static DEFINE_PER_CPU(struct napi_alloc_cache, napi_alloc_cache);
static void *__napi_alloc_frag(unsigned int fragsz, gfp_t gfp_mask)
{
struct napi_alloc_cache *nc = this_cpu_ptr(&napi_alloc_cache);
return page_frag_alloc(&nc->page, fragsz, gfp_mask);
}
void *napi_alloc_frag(unsigned int fragsz)
{
fragsz = SKB_DATA_ALIGN(fragsz);
return __napi_alloc_frag(fragsz, GFP_ATOMIC);
}
EXPORT_SYMBOL(napi_alloc_frag);
/**
* netdev_alloc_frag - allocate a page fragment
* @fragsz: fragment size
*
* Allocates a frag from a page for receive buffer.
* Uses GFP_ATOMIC allocations.
*/
void *netdev_alloc_frag(unsigned int fragsz)
{
struct page_frag_cache *nc;
void *data;
fragsz = SKB_DATA_ALIGN(fragsz);
if (in_irq() || irqs_disabled()) {
nc = this_cpu_ptr(&netdev_alloc_cache);
data = page_frag_alloc(nc, fragsz, GFP_ATOMIC);
} else {
local_bh_disable();
data = __napi_alloc_frag(fragsz, GFP_ATOMIC);
local_bh_enable();
}
return data;
}
EXPORT_SYMBOL(netdev_alloc_frag);
/**
* __netdev_alloc_skb - allocate an skbuff for rx on a specific device
* @dev: network device to receive on
* @len: length to allocate
* @gfp_mask: get_free_pages mask, passed to alloc_skb
*
* Allocate a new &sk_buff and assign it a usage count of one. The
* buffer has NET_SKB_PAD headroom built in. Users should allocate
* the headroom they think they need without accounting for the
* built in space. The built in space is used for optimisations.
*
* %NULL is returned if there is no free memory.
*/
struct sk_buff *__netdev_alloc_skb(struct net_device *dev, unsigned int len,
gfp_t gfp_mask)
{
struct page_frag_cache *nc;
struct sk_buff *skb;
bool pfmemalloc;
void *data;
len += NET_SKB_PAD;
/* If requested length is either too small or too big,
* we use kmalloc() for skb->head allocation.
*/
if (len <= SKB_WITH_OVERHEAD(1024) ||
len > SKB_WITH_OVERHEAD(PAGE_SIZE) ||
(gfp_mask & (__GFP_DIRECT_RECLAIM | GFP_DMA))) {
skb = __alloc_skb(len, gfp_mask, SKB_ALLOC_RX, NUMA_NO_NODE);
if (!skb)
goto skb_fail;
goto skb_success;
}
len += SKB_DATA_ALIGN(sizeof(struct skb_shared_info));
len = SKB_DATA_ALIGN(len);
if (sk_memalloc_socks())
gfp_mask |= __GFP_MEMALLOC;
if (in_irq() || irqs_disabled()) {
nc = this_cpu_ptr(&netdev_alloc_cache);
data = page_frag_alloc(nc, len, gfp_mask);
pfmemalloc = nc->pfmemalloc;
} else {
local_bh_disable();
nc = this_cpu_ptr(&napi_alloc_cache.page);
data = page_frag_alloc(nc, len, gfp_mask);
pfmemalloc = nc->pfmemalloc;
local_bh_enable();
}
if (unlikely(!data))
return NULL;
skb = __build_skb(data, len);
if (unlikely(!skb)) {
skb_free_frag(data);
return NULL;
}
if (pfmemalloc)
skb->pfmemalloc = 1;
skb->head_frag = 1;
skb_success:
skb_reserve(skb, NET_SKB_PAD);
skb->dev = dev;
skb_fail:
return skb;
}
EXPORT_SYMBOL(__netdev_alloc_skb);
/**
* __napi_alloc_skb - allocate skbuff for rx in a specific NAPI instance
* @napi: napi instance this buffer was allocated for
* @len: length to allocate
* @gfp_mask: get_free_pages mask, passed to alloc_skb and alloc_pages
*
* Allocate a new sk_buff for use in NAPI receive. This buffer will
* attempt to allocate the head from a special reserved region used
* only for NAPI Rx allocation. By doing this we can save several
* CPU cycles by avoiding having to disable and re-enable IRQs.
*
* %NULL is returned if there is no free memory.
*/
struct sk_buff *__napi_alloc_skb(struct napi_struct *napi, unsigned int len,
gfp_t gfp_mask)
{
struct napi_alloc_cache *nc;
struct sk_buff *skb;
void *data;
len += NET_SKB_PAD + NET_IP_ALIGN;
/* If requested length is either too small or too big,
* we use kmalloc() for skb->head allocation.
*/
if (len <= SKB_WITH_OVERHEAD(1024) ||
len > SKB_WITH_OVERHEAD(PAGE_SIZE) ||
(gfp_mask & (__GFP_DIRECT_RECLAIM | GFP_DMA))) {
skb = __alloc_skb(len, gfp_mask, SKB_ALLOC_RX, NUMA_NO_NODE);
if (!skb)
goto skb_fail;
goto skb_success;
}
nc = this_cpu_ptr(&napi_alloc_cache);
len += SKB_DATA_ALIGN(sizeof(struct skb_shared_info));
len = SKB_DATA_ALIGN(len);
if (sk_memalloc_socks())
gfp_mask |= __GFP_MEMALLOC;
data = page_frag_alloc(&nc->page, len, gfp_mask);
if (unlikely(!data))
return NULL;
skb = __build_skb(data, len);
if (unlikely(!skb)) {
skb_free_frag(data);
return NULL;
}
if (nc->page.pfmemalloc)
skb->pfmemalloc = 1;
skb->head_frag = 1;
skb_success:
skb_reserve(skb, NET_SKB_PAD + NET_IP_ALIGN);
skb->dev = napi->dev;
skb_fail:
return skb;
}
EXPORT_SYMBOL(__napi_alloc_skb);
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(skb, i, page, off, size);
skb->len += size;
skb->data_len += size;
skb->truesize += truesize;
}
EXPORT_SYMBOL(skb_add_rx_frag);
void skb_coalesce_rx_frag(struct sk_buff *skb, int i, int size,
unsigned int truesize)
{
skb_frag_t *frag = &skb_shinfo(skb)->frags[i];
skb_frag_size_add(frag, size);
skb->len += size;
skb->data_len += size;
skb->truesize += truesize;
}
EXPORT_SYMBOL(skb_coalesce_rx_frag);
static void skb_drop_list(struct sk_buff **listp)
{
kfree_skb_list(*listp);
*listp = NULL;
}
static inline void skb_drop_fraglist(struct sk_buff *skb)
{
skb_drop_list(&skb_shinfo(skb)->frag_list);
}
static void skb_clone_fraglist(struct sk_buff *skb)
{
struct sk_buff *list;
skb_walk_frags(skb, list)
skb_get(list);
}
static void skb_free_head(struct sk_buff *skb)
{
unsigned char *head = skb->head;
if (skb->head_frag)
skb_free_frag(head);
else
kfree(head);
}
static void skb_release_data(struct sk_buff *skb)
{
struct skb_shared_info *shinfo = skb_shinfo(skb);
int i;
if (skb->cloned &&
atomic_sub_return(skb->nohdr ? (1 << SKB_DATAREF_SHIFT) + 1 : 1,
&shinfo->dataref))
return;
for (i = 0; i < shinfo->nr_frags; i++)
__skb_frag_unref(&shinfo->frags[i]);
if (shinfo->frag_list)
kfree_skb_list(shinfo->frag_list);
skb_zcopy_clear(skb, true);
skb_free_head(skb);
}
/*
* Free an skbuff by memory without cleaning the state.
*/
static void kfree_skbmem(struct sk_buff *skb)
{
struct sk_buff_fclones *fclones;
switch (skb->fclone) {
case SKB_FCLONE_UNAVAILABLE:
kmem_cache_free(skbuff_head_cache, skb);
return;
case SKB_FCLONE_ORIG:
fclones = container_of(skb, struct sk_buff_fclones, skb1);
/* We usually free the clone (TX completion) before original skb
* This test would have no chance to be true for the clone,
* while here, branch prediction will be good.
*/
if (refcount_read(&fclones->fclone_ref) == 1)
goto fastpath;
break;
default: /* SKB_FCLONE_CLONE */
fclones = container_of(skb, struct sk_buff_fclones, skb2);
break;
}
if (!refcount_dec_and_test(&fclones->fclone_ref))
return;
fastpath:
kmem_cache_free(skbuff_fclone_cache, fclones);
}
void skb_release_head_state(struct sk_buff *skb)
{
nf_reset_ct(skb);
skb_dst_drop(skb);
if (skb->destructor) {
WARN_ON(in_irq());
skb->destructor(skb);
}
#if IS_ENABLED(CONFIG_NF_CONNTRACK)
nf_conntrack_put(skb_nfct(skb));
#endif
skb_ext_put(skb);
}
/* Free everything but the sk_buff shell. */
static void skb_release_all(struct sk_buff *skb)
{
skb_release_head_state(skb);
if (likely(skb->head))
skb_release_data(skb);
}
/**
* __kfree_skb - private function
* @skb: buffer
*
* Free an sk_buff. Release anything attached to the buffer.
* Clean the state. This is an internal helper function. Users should
* always call kfree_skb
*/
void __kfree_skb(struct sk_buff *skb)
{
skb_release_all(skb);
kfree_skbmem(skb);
}
EXPORT_SYMBOL(__kfree_skb);
/**
* kfree_skb - free an sk_buff
* @skb: buffer to free
*
* Drop a reference to the buffer and free it if the usage count has
* hit zero.
*/
void kfree_skb(struct sk_buff *skb)
{
if (!skb_unref(skb))
return;
trace_android_vh_kfree_skb(skb);
trace_kfree_skb(skb, __builtin_return_address(0));
__kfree_skb(skb);
}
EXPORT_SYMBOL(kfree_skb);
void kfree_skb_list(struct sk_buff *segs)
{
while (segs) {
struct sk_buff *next = segs->next;
kfree_skb(segs);
segs = next;
}
}
EXPORT_SYMBOL(kfree_skb_list);
/* Dump skb information and contents.
*
* Must only be called from net_ratelimit()-ed paths.
*
* Dumps whole packets if full_pkt, only headers otherwise.
*/
void skb_dump(const char *level, const struct sk_buff *skb, bool full_pkt)
{
struct skb_shared_info *sh = skb_shinfo(skb);
struct net_device *dev = skb->dev;
struct sock *sk = skb->sk;
struct sk_buff *list_skb;
bool has_mac, has_trans;
int headroom, tailroom;
int i, len, seg_len;
if (full_pkt)
len = skb->len;
else
len = min_t(int, skb->len, MAX_HEADER + 128);
headroom = skb_headroom(skb);
tailroom = skb_tailroom(skb);
has_mac = skb_mac_header_was_set(skb);
has_trans = skb_transport_header_was_set(skb);
printk("%sskb len=%u headroom=%u headlen=%u tailroom=%u\n"
"mac=(%d,%d) net=(%d,%d) trans=%d\n"
"shinfo(txflags=%u nr_frags=%u gso(size=%hu type=%u segs=%hu))\n"
"csum(0x%x ip_summed=%u complete_sw=%u valid=%u level=%u)\n"
"hash(0x%x sw=%u l4=%u) proto=0x%04x pkttype=%u iif=%d\n",
level, skb->len, headroom, skb_headlen(skb), tailroom,
has_mac ? skb->mac_header : -1,
has_mac ? skb_mac_header_len(skb) : -1,
skb->network_header,
has_trans ? skb_network_header_len(skb) : -1,
has_trans ? skb->transport_header : -1,
sh->tx_flags, sh->nr_frags,
sh->gso_size, sh->gso_type, sh->gso_segs,
skb->csum, skb->ip_summed, skb->csum_complete_sw,
skb->csum_valid, skb->csum_level,
skb->hash, skb->sw_hash, skb->l4_hash,
ntohs(skb->protocol), skb->pkt_type, skb->skb_iif);
if (dev)
printk("%sdev name=%s feat=%pNF\n",
level, dev->name, &dev->features);
if (sk)
printk("%ssk family=%hu type=%u proto=%u\n",
level, sk->sk_family, sk->sk_type, sk->sk_protocol);
if (full_pkt && headroom)
print_hex_dump(level, "skb headroom: ", DUMP_PREFIX_OFFSET,
16, 1, skb->head, headroom, false);
seg_len = min_t(int, skb_headlen(skb), len);
if (seg_len)
print_hex_dump(level, "skb linear: ", DUMP_PREFIX_OFFSET,
16, 1, skb->data, seg_len, false);
len -= seg_len;
if (full_pkt && tailroom)
print_hex_dump(level, "skb tailroom: ", DUMP_PREFIX_OFFSET,
16, 1, skb_tail_pointer(skb), tailroom, false);
for (i = 0; len && i < skb_shinfo(skb)->nr_frags; i++) {
skb_frag_t *frag = &skb_shinfo(skb)->frags[i];
u32 p_off, p_len, copied;
struct page *p;
u8 *vaddr;
skb_frag_foreach_page(frag, skb_frag_off(frag),
skb_frag_size(frag), p, p_off, p_len,
copied) {
seg_len = min_t(int, p_len, len);
vaddr = kmap_atomic(p);
print_hex_dump(level, "skb frag: ",
DUMP_PREFIX_OFFSET,
16, 1, vaddr + p_off, seg_len, false);
kunmap_atomic(vaddr);
len -= seg_len;
if (!len)
break;
}
}
if (full_pkt && skb_has_frag_list(skb)) {
printk("skb fraglist:\n");
skb_walk_frags(skb, list_skb)
skb_dump(level, list_skb, true);
}
}
EXPORT_SYMBOL(skb_dump);
/**
* skb_tx_error - report an sk_buff xmit error
* @skb: buffer that triggered an error
*
* Report xmit error if a device callback is tracking this skb.
* skb must be freed afterwards.
*/
void skb_tx_error(struct sk_buff *skb)
{
skb_zcopy_clear(skb, true);
}
EXPORT_SYMBOL(skb_tx_error);
#ifdef CONFIG_TRACEPOINTS
/**
* consume_skb - free an skbuff
* @skb: buffer to free
*
* Drop a ref to the buffer and free it if the usage count has hit zero
* Functions identically to kfree_skb, but kfree_skb assumes that the frame
* is being dropped after a failure and notes that
*/
void consume_skb(struct sk_buff *skb)
{
if (!skb_unref(skb))
return;
trace_consume_skb(skb);
__kfree_skb(skb);
}
EXPORT_SYMBOL(consume_skb);
#endif
/**
* consume_stateless_skb - free an skbuff, assuming it is stateless
* @skb: buffer to free
*
* Alike consume_skb(), but this variant assumes that this is the last
* skb reference and all the head states have been already dropped
*/
void __consume_stateless_skb(struct sk_buff *skb)
{
trace_consume_skb(skb);
skb_release_data(skb);
kfree_skbmem(skb);
}
void __kfree_skb_flush(void)
{
struct napi_alloc_cache *nc = this_cpu_ptr(&napi_alloc_cache);
/* flush skb_cache if containing objects */
if (nc->skb_count) {
kmem_cache_free_bulk(skbuff_head_cache, nc->skb_count,
nc->skb_cache);
nc->skb_count = 0;
}
}
static inline void _kfree_skb_defer(struct sk_buff *skb)
{
struct napi_alloc_cache *nc = this_cpu_ptr(&napi_alloc_cache);
/* drop skb->head and call any destructors for packet */
skb_release_all(skb);
/* record skb to CPU local list */
nc->skb_cache[nc->skb_count++] = skb;
#ifdef CONFIG_SLUB
/* SLUB writes into objects when freeing */
prefetchw(skb);
#endif
/* flush skb_cache if it is filled */
if (unlikely(nc->skb_count == NAPI_SKB_CACHE_SIZE)) {
kmem_cache_free_bulk(skbuff_head_cache, NAPI_SKB_CACHE_SIZE,
nc->skb_cache);
nc->skb_count = 0;
}
}
void __kfree_skb_defer(struct sk_buff *skb)
{
_kfree_skb_defer(skb);
}
void napi_consume_skb(struct sk_buff *skb, int budget)
{
/* Zero budget indicate non-NAPI context called us, like netpoll */
if (unlikely(!budget)) {
dev_consume_skb_any(skb);
return;
}
if (!skb_unref(skb))
return;
/* if reaching here SKB is ready to free */
trace_consume_skb(skb);
/* if SKB is a clone, don't handle this case */
if (skb->fclone != SKB_FCLONE_UNAVAILABLE) {
__kfree_skb(skb);
return;
}
_kfree_skb_defer(skb);
}
EXPORT_SYMBOL(napi_consume_skb);
/* Make sure a field is enclosed inside headers_start/headers_end section */
#define CHECK_SKB_FIELD(field) \
BUILD_BUG_ON(offsetof(struct sk_buff, field) < \
offsetof(struct sk_buff, headers_start)); \
BUILD_BUG_ON(offsetof(struct sk_buff, field) > \
offsetof(struct sk_buff, headers_end)); \
static void __copy_skb_header(struct sk_buff *new, const struct sk_buff *old)
{
new->tstamp = old->tstamp;
/* We do not copy old->sk */
new->dev = old->dev;
memcpy(new->cb, old->cb, sizeof(old->cb));
skb_dst_copy(new, old);
__skb_ext_copy(new, old);
__nf_copy(new, old, false);
/* Note : this field could be in headers_start/headers_end section
* It is not yet because we do not want to have a 16 bit hole
*/
new->queue_mapping = old->queue_mapping;
memcpy(&new->headers_start, &old->headers_start,
offsetof(struct sk_buff, headers_end) -
offsetof(struct sk_buff, headers_start));
CHECK_SKB_FIELD(protocol);
CHECK_SKB_FIELD(csum);
CHECK_SKB_FIELD(hash);
CHECK_SKB_FIELD(priority);
CHECK_SKB_FIELD(skb_iif);
CHECK_SKB_FIELD(vlan_proto);
CHECK_SKB_FIELD(vlan_tci);
CHECK_SKB_FIELD(transport_header);
CHECK_SKB_FIELD(network_header);
CHECK_SKB_FIELD(mac_header);
CHECK_SKB_FIELD(inner_protocol);
CHECK_SKB_FIELD(inner_transport_header);
CHECK_SKB_FIELD(inner_network_header);
CHECK_SKB_FIELD(inner_mac_header);
CHECK_SKB_FIELD(mark);
#ifdef CONFIG_NETWORK_SECMARK
CHECK_SKB_FIELD(secmark);
#endif
#ifdef CONFIG_NET_RX_BUSY_POLL
CHECK_SKB_FIELD(napi_id);
#endif
#ifdef CONFIG_XPS
CHECK_SKB_FIELD(sender_cpu);
#endif
#ifdef CONFIG_NET_SCHED
CHECK_SKB_FIELD(tc_index);
#endif
}
/*
* You should not add any new code to this function. Add it to
* __copy_skb_header above instead.
*/
static struct sk_buff *__skb_clone(struct sk_buff *n, struct sk_buff *skb)
{
#define C(x) n->x = skb->x
n->next = n->prev = NULL;
n->sk = NULL;
__copy_skb_header(n, skb);
C(len);
C(data_len);
C(mac_len);
n->hdr_len = skb->nohdr ? skb_headroom(skb) : skb->hdr_len;
n->cloned = 1;
n->nohdr = 0;
n->peeked = 0;
C(pfmemalloc);
n->destructor = NULL;
C(tail);
C(end);
C(head);
C(head_frag);
C(data);
C(truesize);
refcount_set(&n->users, 1);
atomic_inc(&(skb_shinfo(skb)->dataref));
skb->cloned = 1;
return n;
#undef C
}
/**
* alloc_skb_for_msg() - allocate sk_buff to wrap frag list forming a msg
* @first: first sk_buff of the msg
*/
struct sk_buff *alloc_skb_for_msg(struct sk_buff *first)
{
struct sk_buff *n;
n = alloc_skb(0, GFP_ATOMIC);
if (!n)
return NULL;
n->len = first->len;
n->data_len = first->len;
n->truesize = first->truesize;
skb_shinfo(n)->frag_list = first;
__copy_skb_header(n, first);
n->destructor = NULL;
return n;
}
EXPORT_SYMBOL_GPL(alloc_skb_for_msg);
/**
* skb_morph - morph one skb into another
* @dst: the skb to receive the contents
* @src: the skb to supply the contents
*
* This is identical to skb_clone except that the target skb is
* supplied by the user.
*
* The target skb is returned upon exit.
*/
struct sk_buff *skb_morph(struct sk_buff *dst, struct sk_buff *src)
{
skb_release_all(dst);
return __skb_clone(dst, src);
}
EXPORT_SYMBOL_GPL(skb_morph);
int mm_account_pinned_pages(struct mmpin *mmp, size_t size)
{
unsigned long max_pg, num_pg, new_pg, old_pg;
struct user_struct *user;
if (capable(CAP_IPC_LOCK) || !size)
return 0;
num_pg = (size >> PAGE_SHIFT) + 2; /* worst case */
max_pg = rlimit(RLIMIT_MEMLOCK) >> PAGE_SHIFT;
user = mmp->user ? : current_user();
do {
old_pg = atomic_long_read(&user->locked_vm);
new_pg = old_pg + num_pg;
if (new_pg > max_pg)
return -ENOBUFS;
} while (atomic_long_cmpxchg(&user->locked_vm, old_pg, new_pg) !=
old_pg);
if (!mmp->user) {
mmp->user = get_uid(user);
mmp->num_pg = num_pg;
} else {
mmp->num_pg += num_pg;
}
return 0;
}
EXPORT_SYMBOL_GPL(mm_account_pinned_pages);
void mm_unaccount_pinned_pages(struct mmpin *mmp)
{
if (mmp->user) {
atomic_long_sub(mmp->num_pg, &mmp->user->locked_vm);
free_uid(mmp->user);
}
}
EXPORT_SYMBOL_GPL(mm_unaccount_pinned_pages);
struct ubuf_info *sock_zerocopy_alloc(struct sock *sk, size_t size)
{
struct ubuf_info *uarg;
struct sk_buff *skb;
WARN_ON_ONCE(!in_task());
skb = sock_omalloc(sk, 0, GFP_KERNEL);
if (!skb)
return NULL;
BUILD_BUG_ON(sizeof(*uarg) > sizeof(skb->cb));
uarg = (void *)skb->cb;
uarg->mmp.user = NULL;
if (mm_account_pinned_pages(&uarg->mmp, size)) {
kfree_skb(skb);
return NULL;
}
uarg->callback = sock_zerocopy_callback;
uarg->id = ((u32)atomic_inc_return(&sk->sk_zckey)) - 1;
uarg->len = 1;
uarg->bytelen = size;
uarg->zerocopy = 1;
refcount_set(&uarg->refcnt, 1);
sock_hold(sk);
return uarg;
}
EXPORT_SYMBOL_GPL(sock_zerocopy_alloc);
static inline struct sk_buff *skb_from_uarg(struct ubuf_info *uarg)
{
return container_of((void *)uarg, struct sk_buff, cb);
}
struct ubuf_info *sock_zerocopy_realloc(struct sock *sk, size_t size,
struct ubuf_info *uarg)
{
if (uarg) {
const u32 byte_limit = 1 << 19; /* limit to a few TSO */
u32 bytelen, next;
/* realloc only when socket is locked (TCP, UDP cork),
* so uarg->len and sk_zckey access is serialized
*/
if (!sock_owned_by_user(sk)) {
WARN_ON_ONCE(1);
return NULL;
}
bytelen = uarg->bytelen + size;
if (uarg->len == USHRT_MAX - 1 || bytelen > byte_limit) {
/* TCP can create new skb to attach new uarg */
if (sk->sk_type == SOCK_STREAM)
goto new_alloc;
return NULL;
}
next = (u32)atomic_read(&sk->sk_zckey);
if ((u32)(uarg->id + uarg->len) == next) {
if (mm_account_pinned_pages(&uarg->mmp, size))
return NULL;
uarg->len++;
uarg->bytelen = bytelen;
atomic_set(&sk->sk_zckey, ++next);
/* no extra ref when appending to datagram (MSG_MORE) */
if (sk->sk_type == SOCK_STREAM)
sock_zerocopy_get(uarg);
return uarg;
}
}
new_alloc:
return sock_zerocopy_alloc(sk, size);
}
EXPORT_SYMBOL_GPL(sock_zerocopy_realloc);
static bool skb_zerocopy_notify_extend(struct sk_buff *skb, u32 lo, u16 len)
{
struct sock_exterr_skb *serr = SKB_EXT_ERR(skb);
u32 old_lo, old_hi;
u64 sum_len;
old_lo = serr->ee.ee_info;
old_hi = serr->ee.ee_data;
sum_len = old_hi - old_lo + 1ULL + len;
if (sum_len >= (1ULL << 32))
return false;
if (lo != old_hi + 1)
return false;
serr->ee.ee_data += len;
return true;
}
void sock_zerocopy_callback(struct ubuf_info *uarg, bool success)
{
struct sk_buff *tail, *skb = skb_from_uarg(uarg);
struct sock_exterr_skb *serr;
struct sock *sk = skb->sk;
struct sk_buff_head *q;
unsigned long flags;
u32 lo, hi;
u16 len;
mm_unaccount_pinned_pages(&uarg->mmp);
/* if !len, there was only 1 call, and it was aborted
* so do not queue a completion notification
*/
if (!uarg->len || sock_flag(sk, SOCK_DEAD))
goto release;
len = uarg->len;
lo = uarg->id;
hi = uarg->id + len - 1;
serr = SKB_EXT_ERR(skb);
memset(serr, 0, sizeof(*serr));
serr->ee.ee_errno = 0;
serr->ee.ee_origin = SO_EE_ORIGIN_ZEROCOPY;
serr->ee.ee_data = hi;
serr->ee.ee_info = lo;
if (!success)
serr->ee.ee_code |= SO_EE_CODE_ZEROCOPY_COPIED;
q = &sk->sk_error_queue;
spin_lock_irqsave(&q->lock, flags);
tail = skb_peek_tail(q);
if (!tail || SKB_EXT_ERR(tail)->ee.ee_origin != SO_EE_ORIGIN_ZEROCOPY ||
!skb_zerocopy_notify_extend(tail, lo, len)) {
__skb_queue_tail(q, skb);
skb = NULL;
}
spin_unlock_irqrestore(&q->lock, flags);
sk->sk_error_report(sk);
release:
consume_skb(skb);
sock_put(sk);
}
EXPORT_SYMBOL_GPL(sock_zerocopy_callback);
void sock_zerocopy_put(struct ubuf_info *uarg)
{
if (uarg && refcount_dec_and_test(&uarg->refcnt)) {
if (uarg->callback)
uarg->callback(uarg, uarg->zerocopy);
else
consume_skb(skb_from_uarg(uarg));
}
}
EXPORT_SYMBOL_GPL(sock_zerocopy_put);
void sock_zerocopy_put_abort(struct ubuf_info *uarg, bool have_uref)
{
if (uarg) {
struct sock *sk = skb_from_uarg(uarg)->sk;
atomic_dec(&sk->sk_zckey);
uarg->len--;
if (have_uref)
sock_zerocopy_put(uarg);
}
}
EXPORT_SYMBOL_GPL(sock_zerocopy_put_abort);
int skb_zerocopy_iter_dgram(struct sk_buff *skb, struct msghdr *msg, int len)
{
return __zerocopy_sg_from_iter(skb->sk, skb, &msg->msg_iter, len);
}
EXPORT_SYMBOL_GPL(skb_zerocopy_iter_dgram);
int skb_zerocopy_iter_stream(struct sock *sk, struct sk_buff *skb,
struct msghdr *msg, int len,
struct ubuf_info *uarg)
{
struct ubuf_info *orig_uarg = skb_zcopy(skb);
struct iov_iter orig_iter = msg->msg_iter;
int err, orig_len = skb->len;
/* An skb can only point to one uarg. This edge case happens when
* TCP appends to an skb, but zerocopy_realloc triggered a new alloc.
*/
if (orig_uarg && uarg != orig_uarg)
return -EEXIST;
err = __zerocopy_sg_from_iter(sk, skb, &msg->msg_iter, len);
if (err == -EFAULT || (err == -EMSGSIZE && skb->len == orig_len)) {
struct sock *save_sk = skb->sk;
/* Streams do not free skb on error. Reset to prev state. */
msg->msg_iter = orig_iter;
skb->sk = sk;
___pskb_trim(skb, orig_len);
skb->sk = save_sk;
return err;
}
skb_zcopy_set(skb, uarg, NULL);
return skb->len - orig_len;
}
EXPORT_SYMBOL_GPL(skb_zerocopy_iter_stream);
static int skb_zerocopy_clone(struct sk_buff *nskb, struct sk_buff *orig,
gfp_t gfp_mask)
{
if (skb_zcopy(orig)) {
if (skb_zcopy(nskb)) {
/* !gfp_mask callers are verified to !skb_zcopy(nskb) */
if (!gfp_mask) {
WARN_ON_ONCE(1);
return -ENOMEM;
}
if (skb_uarg(nskb) == skb_uarg(orig))
return 0;
if (skb_copy_ubufs(nskb, GFP_ATOMIC))
return -EIO;
}
skb_zcopy_set(nskb, skb_uarg(orig), NULL);
}
return 0;
}
/**
* skb_copy_ubufs - copy userspace skb frags buffers to kernel
* @skb: the skb to modify
* @gfp_mask: allocation priority
*
* This must be called on SKBTX_DEV_ZEROCOPY skb.
* It will copy all frags into kernel and drop the reference
* to userspace pages.
*
* If this function is called from an interrupt gfp_mask() must be
* %GFP_ATOMIC.
*
* Returns 0 on success or a negative error code on failure
* to allocate kernel memory to copy to.
*/
int skb_copy_ubufs(struct sk_buff *skb, gfp_t gfp_mask)
{
int num_frags = skb_shinfo(skb)->nr_frags;
struct page *page, *head = NULL;
int i, new_frags;
u32 d_off;
if (skb_shared(skb) || skb_unclone(skb, gfp_mask))
return -EINVAL;
if (!num_frags)
goto release;
new_frags = (__skb_pagelen(skb) + PAGE_SIZE - 1) >> PAGE_SHIFT;
for (i = 0; i < new_frags; i++) {
page = alloc_page(gfp_mask);
if (!page) {
while (head) {
struct page *next = (struct page *)page_private(head);
put_page(head);
head = next;
}
return -ENOMEM;
}
set_page_private(page, (unsigned long)head);
head = page;
}
page = head;
d_off = 0;
for (i = 0; i < num_frags; i++) {
skb_frag_t *f = &skb_shinfo(skb)->frags[i];
u32 p_off, p_len, copied;
struct page *p;
u8 *vaddr;
skb_frag_foreach_page(f, skb_frag_off(f), skb_frag_size(f),
p, p_off, p_len, copied) {
u32 copy, done = 0;
vaddr = kmap_atomic(p);
while (done < p_len) {
if (d_off == PAGE_SIZE) {
d_off = 0;
page = (struct page *)page_private(page);
}
copy = min_t(u32, PAGE_SIZE - d_off, p_len - done);
memcpy(page_address(page) + d_off,
vaddr + p_off + done, copy);
done += copy;
d_off += copy;
}
kunmap_atomic(vaddr);
}
}
/* skb frags release userspace buffers */
for (i = 0; i < num_frags; i++)
skb_frag_unref(skb, i);
/* skb frags point to kernel buffers */
for (i = 0; i < new_frags - 1; i++) {
__skb_fill_page_desc(skb, i, head, 0, PAGE_SIZE);
head = (struct page *)page_private(head);
}
__skb_fill_page_desc(skb, new_frags - 1, head, 0, d_off);
skb_shinfo(skb)->nr_frags = new_frags;
release:
skb_zcopy_clear(skb, false);
return 0;
}
EXPORT_SYMBOL_GPL(skb_copy_ubufs);
/**
* skb_clone - duplicate an sk_buff
* @skb: buffer to clone
* @gfp_mask: allocation priority
*
* Duplicate an &sk_buff. The new one is not owned by a socket. Both
* copies share the same packet data but not structure. The new
* buffer has a reference count of 1. If the allocation fails the
* function returns %NULL otherwise the new buffer is returned.
*
* If this function is called from an interrupt gfp_mask() must be
* %GFP_ATOMIC.
*/
struct sk_buff *skb_clone(struct sk_buff *skb, gfp_t gfp_mask)
{
struct sk_buff_fclones *fclones = container_of(skb,
struct sk_buff_fclones,
skb1);
struct sk_buff *n;
if (skb_orphan_frags(skb, gfp_mask))
return NULL;
if (skb->fclone == SKB_FCLONE_ORIG &&
refcount_read(&fclones->fclone_ref) == 1) {
n = &fclones->skb2;
refcount_set(&fclones->fclone_ref, 2);
} else {
if (skb_pfmemalloc(skb))
gfp_mask |= __GFP_MEMALLOC;
n = kmem_cache_alloc(skbuff_head_cache, gfp_mask);
if (!n)
return NULL;
n->fclone = SKB_FCLONE_UNAVAILABLE;
}
return __skb_clone(n, skb);
}
EXPORT_SYMBOL(skb_clone);
void skb_headers_offset_update(struct sk_buff *skb, int off)
{
/* Only adjust this if it actually is csum_start rather than csum */
if (skb->ip_summed == CHECKSUM_PARTIAL)
skb->csum_start += off;
/* {transport,network,mac}_header and tail are relative to skb->head */
skb->transport_header += off;
skb->network_header += off;
if (skb_mac_header_was_set(skb))
skb->mac_header += off;
skb->inner_transport_header += off;
skb->inner_network_header += off;
skb->inner_mac_header += off;
}
EXPORT_SYMBOL(skb_headers_offset_update);
void skb_copy_header(struct sk_buff *new, const struct sk_buff *old)
{
__copy_skb_header(new, old);
skb_shinfo(new)->gso_size = skb_shinfo(old)->gso_size;
skb_shinfo(new)->gso_segs = skb_shinfo(old)->gso_segs;
skb_shinfo(new)->gso_type = skb_shinfo(old)->gso_type;
}
EXPORT_SYMBOL(skb_copy_header);
static inline int skb_alloc_rx_flag(const struct sk_buff *skb)
{
if (skb_pfmemalloc(skb))
return SKB_ALLOC_RX;
return 0;
}
/**
* skb_copy - create private copy of an sk_buff
* @skb: buffer to copy
* @gfp_mask: allocation priority
*
* Make a copy of both an &sk_buff and its data. This is used when the
* caller wishes to modify the data and needs a private copy of the
* data to alter. Returns %NULL on failure or the pointer to the buffer
* on success. The returned buffer has a reference count of 1.
*
* As by-product this function converts non-linear &sk_buff to linear
* one, so that &sk_buff becomes completely private and caller is allowed
* to modify all the data of returned buffer. This means that this
* function is not recommended for use in circumstances when only
* header is going to be modified. Use pskb_copy() instead.
*/
struct sk_buff *skb_copy(const struct sk_buff *skb, gfp_t gfp_mask)
{
int headerlen = skb_headroom(skb);
unsigned int size = skb_end_offset(skb) + skb->data_len;
struct sk_buff *n = __alloc_skb(size, gfp_mask,
skb_alloc_rx_flag(skb), NUMA_NO_NODE);
if (!n)
return NULL;
/* Set the data pointer */
skb_reserve(n, headerlen);
/* Set the tail pointer and length */
skb_put(n, skb->len);
BUG_ON(skb_copy_bits(skb, -headerlen, n->head, headerlen + skb->len));
skb_copy_header(n, skb);
return n;
}
EXPORT_SYMBOL(skb_copy);
/**
* __pskb_copy_fclone - create copy of an sk_buff with private head.
* @skb: buffer to copy
* @headroom: headroom of new skb
* @gfp_mask: allocation priority
* @fclone: if true allocate the copy of the skb from the fclone
* cache instead of the head cache; it is recommended to set this
* to true for the cases where the copy will likely be cloned
*
* Make a copy of both an &sk_buff and part of its data, located
* in header. Fragmented data remain shared. This is used when
* the caller wishes to modify only header of &sk_buff and needs
* private copy of the header to alter. Returns %NULL on failure
* or the pointer to the buffer on success.
* The returned buffer has a reference count of 1.
*/
struct sk_buff *__pskb_copy_fclone(struct sk_buff *skb, int headroom,
gfp_t gfp_mask, bool fclone)
{
unsigned int size = skb_headlen(skb) + headroom;
int flags = skb_alloc_rx_flag(skb) | (fclone ? SKB_ALLOC_FCLONE : 0);
struct sk_buff *n = __alloc_skb(size, gfp_mask, flags, NUMA_NO_NODE);
if (!n)
goto out;
/* Set the data pointer */
skb_reserve(n, headroom);
/* Set the tail pointer and length */
skb_put(n, skb_headlen(skb));
/* Copy the bytes */
skb_copy_from_linear_data(skb, n->data, n->len);
n->truesize += skb->data_len;
n->data_len = skb->data_len;
n->len = skb->len;
if (skb_shinfo(skb)->nr_frags) {
int i;
if (skb_orphan_frags(skb, gfp_mask) ||
skb_zerocopy_clone(n, skb, gfp_mask)) {
kfree_skb(n);
n = NULL;
goto out;
}
for (i = 0; i < skb_shinfo(skb)->nr_frags; i++) {
skb_shinfo(n)->frags[i] = skb_shinfo(skb)->frags[i];
skb_frag_ref(skb, i);
}
skb_shinfo(n)->nr_frags = i;
}
if (skb_has_frag_list(skb)) {
skb_shinfo(n)->frag_list = skb_shinfo(skb)->frag_list;
skb_clone_fraglist(n);
}
skb_copy_header(n, skb);
out:
return n;
}
EXPORT_SYMBOL(__pskb_copy_fclone);
/**
* pskb_expand_head - reallocate header of &sk_buff
* @skb: buffer to reallocate
* @nhead: room to add at head
* @ntail: room to add at tail
* @gfp_mask: allocation priority
*
* Expands (or creates identical copy, if @nhead and @ntail are zero)
* header of @skb. &sk_buff itself is not changed. &sk_buff MUST have
* reference count of 1. Returns zero in the case of success or error,
* if expansion failed. In the last case, &sk_buff is not changed.
*
* All the pointers pointing into skb header may change and must be
* reloaded after call to this function.
*/
int pskb_expand_head(struct sk_buff *skb, int nhead, int ntail,
gfp_t gfp_mask)
{
int i, osize = skb_end_offset(skb);
int size = osize + nhead + ntail;
long off;
u8 *data;
BUG_ON(nhead < 0);
BUG_ON(skb_shared(skb));
size = SKB_DATA_ALIGN(size);
if (skb_pfmemalloc(skb))
gfp_mask |= __GFP_MEMALLOC;
data = kmalloc_reserve(size + SKB_DATA_ALIGN(sizeof(struct skb_shared_info)),
gfp_mask, NUMA_NO_NODE, NULL);
if (!data)
goto nodata;
size = SKB_WITH_OVERHEAD(ksize(data));
/* Copy only real data... and, alas, header. This should be
* optimized for the cases when header is void.
*/
memcpy(data + nhead, skb->head, skb_tail_pointer(skb) - skb->head);
memcpy((struct skb_shared_info *)(data + size),
skb_shinfo(skb),
offsetof(struct skb_shared_info, frags[skb_shinfo(skb)->nr_frags]));
/*
* if shinfo is shared we must drop the old head gracefully, but if it
* is not we can just drop the old head and let the existing refcount
* be since all we did is relocate the values
*/
if (skb_cloned(skb)) {
if (skb_orphan_frags(skb, gfp_mask))
goto nofrags;
if (skb_zcopy(skb))
refcount_inc(&skb_uarg(skb)->refcnt);
for (i = 0; i < skb_shinfo(skb)->nr_frags; i++)
skb_frag_ref(skb, i);
if (skb_has_frag_list(skb))
skb_clone_fraglist(skb);
skb_release_data(skb);
} else {
skb_free_head(skb);
}
off = (data + nhead) - skb->head;
skb->head = data;
skb->head_frag = 0;
skb->data += off;
#ifdef NET_SKBUFF_DATA_USES_OFFSET
skb->end = size;
off = nhead;
#else
skb->end = skb->head + size;
#endif
skb->tail += off;
skb_headers_offset_update(skb, nhead);
skb->cloned = 0;
skb->hdr_len = 0;
skb->nohdr = 0;
atomic_set(&skb_shinfo(skb)->dataref, 1);
skb_metadata_clear(skb);
/* It is not generally safe to change skb->truesize.
* For the moment, we really care of rx path, or
* when skb is orphaned (not attached to a socket).
*/
if (!skb->sk || skb->destructor == sock_edemux)
skb->truesize += size - osize;
return 0;
nofrags:
kfree(data);
nodata:
return -ENOMEM;
}
EXPORT_SYMBOL(pskb_expand_head);
/* Make private copy of skb with writable head and some headroom */
struct sk_buff *skb_realloc_headroom(struct sk_buff *skb, unsigned int headroom)
{
struct sk_buff *skb2;
int delta = headroom - skb_headroom(skb);
if (delta <= 0)
skb2 = pskb_copy(skb, GFP_ATOMIC);
else {
skb2 = skb_clone(skb, GFP_ATOMIC);
if (skb2 && pskb_expand_head(skb2, SKB_DATA_ALIGN(delta), 0,
GFP_ATOMIC)) {
kfree_skb(skb2);
skb2 = NULL;
}
}
return skb2;
}
EXPORT_SYMBOL(skb_realloc_headroom);
/**
* skb_copy_expand - copy and expand sk_buff
* @skb: buffer to copy
* @newheadroom: new free bytes at head
* @newtailroom: new free bytes at tail
* @gfp_mask: allocation priority
*
* Make a copy of both an &sk_buff and its data and while doing so
* allocate additional space.
*
* This is used when the caller wishes to modify the data and needs a
* private copy of the data to alter as well as more space for new fields.
* Returns %NULL on failure or the pointer to the buffer
* on success. The returned buffer has a reference count of 1.
*
* You must pass %GFP_ATOMIC as the allocation priority if this function
* is called from an interrupt.
*/
struct sk_buff *skb_copy_expand(const struct sk_buff *skb,
int newheadroom, int newtailroom,
gfp_t gfp_mask)
{
/*
* Allocate the copy buffer
*/
struct sk_buff *n = __alloc_skb(newheadroom + skb->len + newtailroom,
gfp_mask, skb_alloc_rx_flag(skb),
NUMA_NO_NODE);
int oldheadroom = skb_headroom(skb);
int head_copy_len, head_copy_off;
if (!n)
return NULL;
skb_reserve(n, newheadroom);
/* Set the tail pointer and length */
skb_put(n, skb->len);
head_copy_len = oldheadroom;
head_copy_off = 0;
if (newheadroom <= head_copy_len)
head_copy_len = newheadroom;
else
head_copy_off = newheadroom - head_copy_len;
/* Copy the linear header and data. */
BUG_ON(skb_copy_bits(skb, -head_copy_len, n->head + head_copy_off,
skb->len + head_copy_len));
skb_copy_header(n, skb);
skb_headers_offset_update(n, newheadroom - oldheadroom);
return n;
}
EXPORT_SYMBOL(skb_copy_expand);
/**
* __skb_pad - zero pad the tail of an skb
* @skb: buffer to pad
* @pad: space to pad
* @free_on_error: free buffer on error
*
* 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
* if @free_on_error is true.
*/
int __skb_pad(struct sk_buff *skb, int pad, bool free_on_error)
{
int err;
int ntail;
/* If the skbuff is non linear tailroom is always zero.. */
if (!skb_cloned(skb) && skb_tailroom(skb) >= pad) {
memset(skb->data+skb->len, 0, pad);
return 0;
}
ntail = skb->data_len + pad - (skb->end - skb->tail);
if (likely(skb_cloned(skb) || ntail > 0)) {
err = pskb_expand_head(skb, 0, ntail, GFP_ATOMIC);
if (unlikely(err))
goto free_skb;
}
/* FIXME: The use of this function with non-linear skb's really needs
* to be audited.
*/
err = skb_linearize(skb);
if (unlikely(err))
goto free_skb;
memset(skb->data + skb->len, 0, pad);
return 0;
free_skb:
if (free_on_error)
kfree_skb(skb);
return err;
}
EXPORT_SYMBOL(__skb_pad);
/**
* pskb_put - add data to the tail of a potentially fragmented buffer
* @skb: start of the buffer to use
* @tail: tail fragment of the buffer to use
* @len: amount of data to add
*
* This function extends the used data area of the potentially
* fragmented buffer. @tail must be the last fragment of @skb -- or
* @skb itself. If this would exceed the total buffer size the kernel
* will panic. A pointer to the first byte of the extra data is
* returned.
*/
void *pskb_put(struct sk_buff *skb, struct sk_buff *tail, int len)
{
if (tail != skb) {
skb->data_len += len;
skb->len += len;
}
return skb_put(tail, len);
}
EXPORT_SYMBOL_GPL(pskb_put);
/**
* skb_put - add data to a buffer
* @skb: buffer to use
* @len: amount of data to add
*
* This function extends the used data area of the buffer. If this would
* exceed the total buffer size the kernel will panic. A pointer to the
* first byte of the extra data is returned.
*/
void *skb_put(struct sk_buff *skb, unsigned int len)
{
void *tmp = skb_tail_pointer(skb);
SKB_LINEAR_ASSERT(skb);
skb->tail += len;
skb->len += len;
if (unlikely(skb->tail > skb->end))
skb_over_panic(skb, len, __builtin_return_address(0));
return tmp;
}
EXPORT_SYMBOL(skb_put);
/**
* skb_push - add data to the start of a buffer
* @skb: buffer to use
* @len: amount of data to add
*
* This function extends the used data area of the buffer at the buffer
* start. If this would exceed the total buffer headroom the kernel will
* panic. A pointer to the first byte of the extra data is returned.
*/
void *skb_push(struct sk_buff *skb, unsigned int len)
{
skb->data -= len;
skb->len += len;
if (unlikely(skb->data < skb->head))
skb_under_panic(skb, len, __builtin_return_address(0));
return skb->data;
}
EXPORT_SYMBOL(skb_push);
/**
* skb_pull - remove data from the start of a buffer
* @skb: buffer to use
* @len: amount of data to remove
*
* This function removes data from the start of a buffer, returning
* the memory to the headroom. A pointer to the next data in the buffer
* is returned. Once the data has been pulled future pushes will overwrite
* the old data.
*/
void *skb_pull(struct sk_buff *skb, unsigned int len)
{
return skb_pull_inline(skb, len);
}
EXPORT_SYMBOL(skb_pull);
/**
* skb_trim - remove end from a buffer
* @skb: buffer to alter
* @len: new length
*
* Cut the length of a buffer down by removing data from the tail. If
* the buffer is already under the length specified it is not modified.
* The skb must be linear.
*/
void skb_trim(struct sk_buff *skb, unsigned int len)
{
if (skb->len > len)
__skb_trim(skb, len);
}
EXPORT_SYMBOL(skb_trim);
/* Trims skb to length len. It can change skb pointers.
*/
int ___pskb_trim(struct sk_buff *skb, unsigned int len)
{
struct sk_buff **fragp;
struct sk_buff *frag;
int offset = skb_headlen(skb);
int nfrags = skb_shinfo(skb)->nr_frags;
int i;
int err;
if (skb_cloned(skb) &&
unlikely((err = pskb_expand_head(skb, 0, 0, GFP_ATOMIC))))
return err;
i = 0;
if (offset >= len)
goto drop_pages;
for (; i < nfrags; i++) {
int end = offset + skb_frag_size(&skb_shinfo(skb)->frags[i]);
if (end < len) {
offset = end;
continue;
}
skb_frag_size_set(&skb_shinfo(skb)->frags[i++], len - offset);
drop_pages:
skb_shinfo(skb)->nr_frags = i;
for (; i < nfrags; i++)
skb_frag_unref(skb, i);
if (skb_has_frag_list(skb))
skb_drop_fraglist(skb);
goto done;
}
for (fragp = &skb_shinfo(skb)->frag_list; (frag = *fragp);
fragp = &frag->next) {
int end = offset + frag->len;
if (skb_shared(frag)) {
struct sk_buff *nfrag;
nfrag = skb_clone(frag, GFP_ATOMIC);
if (unlikely(!nfrag))
return -ENOMEM;
nfrag->next = frag->next;
consume_skb(frag);
frag = nfrag;
*fragp = frag;
}
if (end < len) {
offset = end;
continue;
}
if (end > len &&
unlikely((err = pskb_trim(frag, len - offset))))
return err;
if (frag->next)
skb_drop_list(&frag->next);
break;
}
done:
if (len > skb_headlen(skb)) {
skb->data_len -= skb->len - len;
skb->len = len;
} else {
skb->len = len;
skb->data_len = 0;
skb_set_tail_pointer(skb, len);
}
if (!skb->sk || skb->destructor == sock_edemux)
skb_condense(skb);
return 0;
}
EXPORT_SYMBOL(___pskb_trim);
/* Note : use pskb_trim_rcsum() instead of calling this directly
*/
int pskb_trim_rcsum_slow(struct sk_buff *skb, unsigned int len)
{
if (skb->ip_summed == CHECKSUM_COMPLETE) {
int delta = skb->len - len;
skb->csum = csum_block_sub(skb->csum,
skb_checksum(skb, len, delta, 0),
len);
} else if (skb->ip_summed == CHECKSUM_PARTIAL) {
int hdlen = (len > skb_headlen(skb)) ? skb_headlen(skb) : len;
int offset = skb_checksum_start_offset(skb) + skb->csum_offset;
if (offset + sizeof(__sum16) > hdlen)
return -EINVAL;
}
return __pskb_trim(skb, len);
}
EXPORT_SYMBOL(pskb_trim_rcsum_slow);
/**
* __pskb_pull_tail - advance tail of skb header
* @skb: buffer to reallocate
* @delta: number of bytes to advance tail
*
* The function makes a sense only on a fragmented &sk_buff,
* it expands header moving its tail forward and copying necessary
* data from fragmented part.
*
* &sk_buff MUST have reference count of 1.
*
* Returns %NULL (and &sk_buff does not change) if pull failed
* or value of new tail of skb in the case of success.
*
* All the pointers pointing into skb header may change and must be
* reloaded after call to this function.
*/
/* Moves tail of skb head forward, copying data from fragmented part,
* when it is necessary.
* 1. It may fail due to malloc failure.
* 2. It may change skb pointers.
*
* It is pretty complicated. Luckily, it is called only in exceptional cases.
*/
void *__pskb_pull_tail(struct sk_buff *skb, int delta)
{
/* If skb has not enough free space at tail, get new one
* plus 128 bytes for future expansions. If we have enough
* room at tail, reallocate without expansion only if skb is cloned.
*/
int i, k, eat = (skb->tail + delta) - skb->end;
if (eat > 0 || skb_cloned(skb)) {
if (pskb_expand_head(skb, 0, eat > 0 ? eat + 128 : 0,
GFP_ATOMIC))
return NULL;
}
BUG_ON(skb_copy_bits(skb, skb_headlen(skb),
skb_tail_pointer(skb), delta));
/* Optimization: no fragments, no reasons to preestimate
* size of pulled pages. Superb.
*/
if (!skb_has_frag_list(skb))
goto pull_pages;
/* Estimate size of pulled pages. */
eat = delta;
for (i = 0; i < skb_shinfo(skb)->nr_frags; i++) {
int size = skb_frag_size(&skb_shinfo(skb)->frags[i]);
if (size >= eat)
goto pull_pages;
eat -= size;
}
/* If we need update frag list, we are in troubles.
* Certainly, it is possible to add an offset to skb data,
* but taking into account that pulling is expected to
* be very rare operation, it is worth to fight against
* further bloating skb head and crucify ourselves here instead.
* Pure masohism, indeed. 8)8)
*/
if (eat) {
struct sk_buff *list = skb_shinfo(skb)->frag_list;
struct sk_buff *clone = NULL;
struct sk_buff *insp = NULL;
do {
if (list->len <= eat) {
/* Eaten as whole. */
eat -= list->len;
list = list->next;
insp = list;
} else {
/* Eaten partially. */
if (skb_shared(list)) {
/* Sucks! We need to fork list. :-( */
clone = skb_clone(list, GFP_ATOMIC);
if (!clone)
return NULL;
insp = list->next;
list = clone;
} else {
/* This may be pulled without
* problems. */
insp = list;
}
if (!pskb_pull(list, eat)) {
kfree_skb(clone);
return NULL;
}
break;
}
} while (eat);
/* Free pulled out fragments. */
while ((list = skb_shinfo(skb)->frag_list) != insp) {
skb_shinfo(skb)->frag_list = list->next;
consume_skb(list);
}
/* And insert new clone at head. */
if (clone) {
clone->next = list;
skb_shinfo(skb)->frag_list = clone;
}
}
/* Success! Now we may commit changes to skb data. */
pull_pages:
eat = delta;
k = 0;
for (i = 0; i < skb_shinfo(skb)->nr_frags; i++) {
int size = skb_frag_size(&skb_shinfo(skb)->frags[i]);
if (size <= eat) {
skb_frag_unref(skb, i);
eat -= size;
} else {
skb_frag_t *frag = &skb_shinfo(skb)->frags[k];
*frag = skb_shinfo(skb)->frags[i];
if (eat) {
skb_frag_off_add(frag, eat);
skb_frag_size_sub(frag, eat);
if (!i)
goto end;
eat = 0;
}
k++;
}
}
skb_shinfo(skb)->nr_frags = k;
end:
skb->tail += delta;
skb->data_len -= delta;
if (!skb->data_len)
skb_zcopy_clear(skb, false);
return skb_tail_pointer(skb);
}
EXPORT_SYMBOL(__pskb_pull_tail);
/**
* skb_copy_bits - copy bits from skb to kernel buffer
* @skb: source skb
* @offset: offset in source
* @to: destination buffer
* @len: number of bytes to copy
*
* Copy the specified number of bytes from the source skb to the
* destination buffer.
*
* CAUTION ! :
* If its prototype is ever changed,
* check arch/{*}/net/{*}.S files,
* since it is called from BPF assembly code.
*/
int skb_copy_bits(const struct sk_buff *skb, int offset, void *to, int len)
{
int start = skb_headlen(skb);
struct sk_buff *frag_iter;
int i, copy;
if (offset > (int)skb->len - len)
goto fault;
/* Copy header. */
if ((copy = start - offset) > 0) {
if (copy > len)
copy = len;
skb_copy_from_linear_data_offset(skb, offset, to, copy);
if ((len -= copy) == 0)
return 0;
offset += copy;
to += copy;
}
for (i = 0; i < skb_shinfo(skb)->nr_frags; i++) {
int end;
skb_frag_t *f = &skb_shinfo(skb)->frags[i];
WARN_ON(start > offset + len);
end = start + skb_frag_size(f);
if ((copy = end - offset) > 0) {
u32 p_off, p_len, copied;
struct page *p;
u8 *vaddr;
if (copy > len)
copy = len;
skb_frag_foreach_page(f,
skb_frag_off(f) + offset - start,
copy, p, p_off, p_len, copied) {
vaddr = kmap_atomic(p);
memcpy(to + copied, vaddr + p_off, p_len);
kunmap_atomic(vaddr);
}
if ((len -= copy) == 0)
return 0;
offset += copy;
to += copy;
}
start = end;
}
skb_walk_frags(skb, frag_iter) {
int end;
WARN_ON(start > offset + len);
end = start + frag_iter->len;
if ((copy = end - offset) > 0) {
if (copy > len)
copy = len;
if (skb_copy_bits(frag_iter, offset - start, to, copy))
goto fault;
if ((len -= copy) == 0)
return 0;
offset += copy;
to += copy;
}
start = end;
}
if (!len)
return 0;
fault:
return -EFAULT;
}
EXPORT_SYMBOL(skb_copy_bits);
/*
* Callback from splice_to_pipe(), if we need to release some pages
* at the end of the spd in case we error'ed out in filling the pipe.
*/
static void sock_spd_release(struct splice_pipe_desc *spd, unsigned int i)
{
put_page(spd->pages[i]);
}
static struct page *linear_to_page(struct page *page, unsigned int *len,
unsigned int *offset,
struct sock *sk)
{
struct page_frag *pfrag = sk_page_frag(sk);
if (!sk_page_frag_refill(sk, pfrag))
return NULL;
*len = min_t(unsigned int, *len, pfrag->size - pfrag->offset);
memcpy(page_address(pfrag->page) + pfrag->offset,
page_address(page) + *offset, *len);
*offset = pfrag->offset;
pfrag->offset += *len;
return pfrag->page;
}
static bool spd_can_coalesce(const struct splice_pipe_desc *spd,
struct page *page,
unsigned int offset)
{
return spd->nr_pages &&
spd->pages[spd->nr_pages - 1] == page &&
(spd->partial[spd->nr_pages - 1].offset +
spd->partial[spd->nr_pages - 1].len == offset);
}
/*
* Fill page/offset/length into spd, if it can hold more pages.
*/
static bool spd_fill_page(struct splice_pipe_desc *spd,
struct pipe_inode_info *pipe, struct page *page,
unsigned int *len, unsigned int offset,
bool linear,
struct sock *sk)
{
if (unlikely(spd->nr_pages == MAX_SKB_FRAGS))
return true;
if (linear) {
page = linear_to_page(page, len, &offset, sk);
if (!page)
return true;
}
if (spd_can_coalesce(spd, page, offset)) {
spd->partial[spd->nr_pages - 1].len += *len;
return false;
}
get_page(page);
spd->pages[spd->nr_pages] = page;
spd->partial[spd->nr_pages].len = *len;
spd->partial[spd->nr_pages].offset = offset;
spd->nr_pages++;
return false;
}
static bool __splice_segment(struct page *page, unsigned int poff,
unsigned int plen, unsigned int *off,
unsigned int *len,
struct splice_pipe_desc *spd, bool linear,
struct sock *sk,
struct pipe_inode_info *pipe)
{
if (!*len)
return true;
/* skip this segment if already processed */
if (*off >= plen) {
*off -= plen;
return false;
}
/* ignore any bits we already processed */
poff += *off;
plen -= *off;
*off = 0;
do {
unsigned int flen = min(*len, plen);
if (spd_fill_page(spd, pipe, page, &flen, poff,
linear, sk))
return true;
poff += flen;
plen -= flen;
*len -= flen;
} while (*len && plen);
return false;
}
/*
* Map linear and fragment data from the skb to spd. It reports true if the
* pipe is full or if we already spliced the requested length.
*/
static bool __skb_splice_bits(struct sk_buff *skb, struct pipe_inode_info *pipe,
unsigned int *offset, unsigned int *len,
struct splice_pipe_desc *spd, struct sock *sk)
{
int seg;
struct sk_buff *iter;
/* map the linear part :
* If skb->head_frag is set, this 'linear' part is backed by a
* fragment, and if the head is not shared with any clones then
* we can avoid a copy since we own the head portion of this page.
*/
if (__splice_segment(virt_to_page(skb->data),
(unsigned long) skb->data & (PAGE_SIZE - 1),
skb_headlen(skb),
offset, len, spd,
skb_head_is_locked(skb),
sk, pipe))
return true;
/*
* then map the fragments
*/
for (seg = 0; seg < skb_shinfo(skb)->nr_frags; seg++) {
const skb_frag_t *f = &skb_shinfo(skb)->frags[seg];
if (__splice_segment(skb_frag_page(f),
skb_frag_off(f), skb_frag_size(f),
offset, len, spd, false, sk, pipe))
return true;
}
skb_walk_frags(skb, iter) {
if (*offset >= iter->len) {
*offset -= iter->len;
continue;
}
/* __skb_splice_bits() only fails if the output has no room
* left, so no point in going over the frag_list for the error
* case.
*/
if (__skb_splice_bits(iter, pipe, offset, len, spd, sk))
return true;
}
return false;
}
/*
* Map data from the skb to a pipe. Should handle both the linear part,
* the fragments, and the frag list.
*/
int skb_splice_bits(struct sk_buff *skb, struct sock *sk, unsigned int offset,
struct pipe_inode_info *pipe, unsigned int tlen,
unsigned int flags)
{
struct partial_page partial[MAX_SKB_FRAGS];
struct page *pages[MAX_SKB_FRAGS];
struct splice_pipe_desc spd = {
.pages = pages,
.partial = partial,
.nr_pages_max = MAX_SKB_FRAGS,
.ops = &nosteal_pipe_buf_ops,
.spd_release = sock_spd_release,
};
int ret = 0;
__skb_splice_bits(skb, pipe, &offset, &tlen, &spd, sk);
if (spd.nr_pages)
ret = splice_to_pipe(pipe, &spd);
return ret;
}
EXPORT_SYMBOL_GPL(skb_splice_bits);
/* Send skb data on a socket. Socket must be locked. */
int skb_send_sock_locked(struct sock *sk, struct sk_buff *skb, int offset,
int len)
{
unsigned int orig_len = len;
struct sk_buff *head = skb;
unsigned short fragidx;
int slen, ret;
do_frag_list:
/* Deal with head data */
while (offset < skb_headlen(skb) && len) {
struct kvec kv;
struct msghdr msg;
slen = min_t(int, len, skb_headlen(skb) - offset);
kv.iov_base = skb->data + offset;
kv.iov_len = slen;
memset(&msg, 0, sizeof(msg));
msg.msg_flags = MSG_DONTWAIT;
ret = kernel_sendmsg_locked(sk, &msg, &kv, 1, slen);
if (ret <= 0)
goto error;
offset += ret;
len -= ret;
}
/* All the data was skb head? */
if (!len)
goto out;
/* Make offset relative to start of frags */
offset -= skb_headlen(skb);
/* Find where we are in frag list */
for (fragidx = 0; fragidx < skb_shinfo(skb)->nr_frags; fragidx++) {
skb_frag_t *frag = &skb_shinfo(skb)->frags[fragidx];
if (offset < skb_frag_size(frag))
break;
offset -= skb_frag_size(frag);
}
for (; len && fragidx < skb_shinfo(skb)->nr_frags; fragidx++) {
skb_frag_t *frag = &skb_shinfo(skb)->frags[fragidx];
slen = min_t(size_t, len, skb_frag_size(frag) - offset);
while (slen) {
ret = kernel_sendpage_locked(sk, skb_frag_page(frag),
skb_frag_off(frag) + offset,
slen, MSG_DONTWAIT);
if (ret <= 0)
goto error;
len -= ret;
offset += ret;
slen -= ret;
}
offset = 0;
}
if (len) {
/* Process any frag lists */
if (skb == head) {
if (skb_has_frag_list(skb)) {
skb = skb_shinfo(skb)->frag_list;
goto do_frag_list;
}
} else if (skb->next) {
skb = skb->next;
goto do_frag_list;
}
}
out:
return orig_len - len;
error:
return orig_len == len ? ret : orig_len - len;
}
EXPORT_SYMBOL_GPL(skb_send_sock_locked);
/**
* skb_store_bits - store bits from kernel buffer to skb
* @skb: destination buffer
* @offset: offset in destination
* @from: source buffer
* @len: number of bytes to copy
*
* Copy the specified number of bytes from the source buffer to the
* destination skb. This function handles all the messy bits of
* traversing fragment lists and such.
*/
int skb_store_bits(struct sk_buff *skb, int offset, const void *from, int len)
{
int start = skb_headlen(skb);
struct sk_buff *frag_iter;
int i, copy;
if (offset > (int)skb->len - len)
goto fault;
if ((copy = start - offset) > 0) {
if (copy > len)
copy = len;
skb_copy_to_linear_data_offset(skb, offset, from, copy);
if ((len -= copy) == 0)
return 0;
offset += copy;
from += copy;
}
for (i = 0; i < skb_shinfo(skb)->nr_frags; i++) {
skb_frag_t *frag = &skb_shinfo(skb)->frags[i];
int end;
WARN_ON(start > offset + len);
end = start + skb_frag_size(frag);
if ((copy = end - offset) > 0) {
u32 p_off, p_len, copied;
struct page *p;
u8 *vaddr;
if (copy > len)
copy = len;
skb_frag_foreach_page(frag,
skb_frag_off(frag) + offset - start,
copy, p, p_off, p_len, copied) {
vaddr = kmap_atomic(p);
memcpy(vaddr + p_off, from + copied, p_len);
kunmap_atomic(vaddr);
}
if ((len -= copy) == 0)
return 0;
offset += copy;
from += copy;
}
start = end;
}
skb_walk_frags(skb, frag_iter) {
int end;
WARN_ON(start > offset + len);
end = start + frag_iter->len;
if ((copy = end - offset) > 0) {
if (copy > len)
copy = len;
if (skb_store_bits(frag_iter, offset - start,
from, copy))
goto fault;
if ((len -= copy) == 0)
return 0;
offset += copy;
from += copy;
}
start = end;
}
if (!len)
return 0;
fault:
return -EFAULT;
}
EXPORT_SYMBOL(skb_store_bits);
/* Checksum skb data. */
__wsum __skb_checksum(const struct sk_buff *skb, int offset, int len,
__wsum csum, const struct skb_checksum_ops *ops)
{
int start = skb_headlen(skb);
int i, copy = start - offset;
struct sk_buff *frag_iter;
int pos = 0;
/* Checksum header. */
if (copy > 0) {
if (copy > len)
copy = len;
csum = INDIRECT_CALL_1(ops->update, csum_partial_ext,
skb->data + offset, copy, csum);
if ((len -= copy) == 0)
return csum;
offset += copy;
pos = copy;
}
for (i = 0; i < skb_shinfo(skb)->nr_frags; i++) {
int end;
skb_frag_t *frag = &skb_shinfo(skb)->frags[i];
WARN_ON(start > offset + len);
end = start + skb_frag_size(frag);
if ((copy = end - offset) > 0) {
u32 p_off, p_len, copied;
struct page *p;
__wsum csum2;
u8 *vaddr;
if (copy > len)
copy = len;
skb_frag_foreach_page(frag,
skb_frag_off(frag) + offset - start,
copy, p, p_off, p_len, copied) {
vaddr = kmap_atomic(p);
csum2 = INDIRECT_CALL_1(ops->update,
csum_partial_ext,
vaddr + p_off, p_len, 0);
kunmap_atomic(vaddr);
csum = INDIRECT_CALL_1(ops->combine,
csum_block_add_ext, csum,
csum2, pos, p_len);
pos += p_len;
}
if (!(len -= copy))
return csum;
offset += copy;
}
start = end;
}
skb_walk_frags(skb, frag_iter) {
int end;
WARN_ON(start > offset + len);
end = start + frag_iter->len;
if ((copy = end - offset) > 0) {
__wsum csum2;
if (copy > len)
copy = len;
csum2 = __skb_checksum(frag_iter, offset - start,
copy, 0, ops);
csum = INDIRECT_CALL_1(ops->combine, csum_block_add_ext,
csum, csum2, pos, copy);
if ((len -= copy) == 0)
return csum;
offset += copy;
pos += copy;
}
start = end;
}
BUG_ON(len);
return csum;
}
EXPORT_SYMBOL(__skb_checksum);
__wsum skb_checksum(const struct sk_buff *skb, int offset,
int len, __wsum csum)
{
const struct skb_checksum_ops ops = {
.update = csum_partial_ext,
.combine = csum_block_add_ext,
};
return __skb_checksum(skb, offset, len, csum, &ops);
}
EXPORT_SYMBOL(skb_checksum);
/* Both of above in one bottle. */
__wsum skb_copy_and_csum_bits(const struct sk_buff *skb, int offset,
u8 *to, int len)
{
int start = skb_headlen(skb);
int i, copy = start - offset;
struct sk_buff *frag_iter;
int pos = 0;
__wsum csum = 0;
/* Copy header. */
if (copy > 0) {
if (copy > len)
copy = len;
csum = csum_partial_copy_nocheck(skb->data + offset, to,
copy);
if ((len -= copy) == 0)
return csum;
offset += copy;
to += copy;
pos = copy;
}
for (i = 0; i < skb_shinfo(skb)->nr_frags; i++) {
int end;
WARN_ON(start > offset + len);
end = start + skb_frag_size(&skb_shinfo(skb)->frags[i]);
if ((copy = end - offset) > 0) {
skb_frag_t *frag = &skb_shinfo(skb)->frags[i];
u32 p_off, p_len, copied;
struct page *p;
__wsum csum2;
u8 *vaddr;
if (copy > len)
copy = len;
skb_frag_foreach_page(frag,
skb_frag_off(frag) + offset - start,
copy, p, p_off, p_len, copied) {
vaddr = kmap_atomic(p);
csum2 = csum_partial_copy_nocheck(vaddr + p_off,
to + copied,
p_len);
kunmap_atomic(vaddr);
csum = csum_block_add(csum, csum2, pos);
pos += p_len;
}
if (!(len -= copy))
return csum;
offset += copy;
to += copy;
}
start = end;
}
skb_walk_frags(skb, frag_iter) {
__wsum csum2;
int end;
WARN_ON(start > offset + len);
end = start + frag_iter->len;
if ((copy = end - offset) > 0) {
if (copy > len)
copy = len;
csum2 = skb_copy_and_csum_bits(frag_iter,
offset - start,
to, copy);
csum = csum_block_add(csum, csum2, pos);
if ((len -= copy) == 0)
return csum;
offset += copy;
to += copy;
pos += copy;
}
start = end;
}
BUG_ON(len);
return csum;
}
EXPORT_SYMBOL(skb_copy_and_csum_bits);
__sum16 __skb_checksum_complete_head(struct sk_buff *skb, int len)
{
__sum16 sum;
sum = csum_fold(skb_checksum(skb, 0, len, skb->csum));
/* See comments in __skb_checksum_complete(). */
if (likely(!sum)) {
if (unlikely(skb->ip_summed == CHECKSUM_COMPLETE) &&
!skb->csum_complete_sw)
netdev_rx_csum_fault(skb->dev, skb);
}
if (!skb_shared(skb))
skb->csum_valid = !sum;
return sum;
}
EXPORT_SYMBOL(__skb_checksum_complete_head);
/* This function assumes skb->csum already holds pseudo header's checksum,
* which has been changed from the hardware checksum, for example, by
* __skb_checksum_validate_complete(). And, the original skb->csum must
* have been validated unsuccessfully for CHECKSUM_COMPLETE case.
*
* It returns non-zero if the recomputed checksum is still invalid, otherwise
* zero. The new checksum is stored back into skb->csum unless the skb is
* shared.
*/
__sum16 __skb_checksum_complete(struct sk_buff *skb)
{
__wsum csum;
__sum16 sum;
csum = skb_checksum(skb, 0, skb->len, 0);
sum = csum_fold(csum_add(skb->csum, csum));
/* This check is inverted, because we already knew the hardware
* checksum is invalid before calling this function. So, if the
* re-computed checksum is valid instead, then we have a mismatch
* between the original skb->csum and skb_checksum(). This means either
* the original hardware checksum is incorrect or we screw up skb->csum
* when moving skb->data around.
*/
if (likely(!sum)) {
if (unlikely(skb->ip_summed == CHECKSUM_COMPLETE) &&
!skb->csum_complete_sw)
netdev_rx_csum_fault(skb->dev, skb);
}
if (!skb_shared(skb)) {
/* Save full packet checksum */
skb->csum = csum;
skb->ip_summed = CHECKSUM_COMPLETE;
skb->csum_complete_sw = 1;
skb->csum_valid = !sum;
}
return sum;
}
EXPORT_SYMBOL(__skb_checksum_complete);
static __wsum warn_crc32c_csum_update(const void *buff, int len, __wsum sum)
{
net_warn_ratelimited(
"%s: attempt to compute crc32c without libcrc32c.ko\n",
__func__);
return 0;
}
static __wsum warn_crc32c_csum_combine(__wsum csum, __wsum csum2,
int offset, int len)
{
net_warn_ratelimited(
"%s: attempt to compute crc32c without libcrc32c.ko\n",
__func__);
return 0;
}
static const struct skb_checksum_ops default_crc32c_ops = {
.update = warn_crc32c_csum_update,
.combine = warn_crc32c_csum_combine,
};
const struct skb_checksum_ops *crc32c_csum_stub __read_mostly =
&default_crc32c_ops;
EXPORT_SYMBOL(crc32c_csum_stub);
/**
* skb_zerocopy_headlen - Calculate headroom needed for skb_zerocopy()
* @from: source buffer
*
* Calculates the amount of linear headroom needed in the 'to' skb passed
* into skb_zerocopy().
*/
unsigned int
skb_zerocopy_headlen(const struct sk_buff *from)
{
unsigned int hlen = 0;
if (!from->head_frag ||
skb_headlen(from) < L1_CACHE_BYTES ||
skb_shinfo(from)->nr_frags >= MAX_SKB_FRAGS) {
hlen = skb_headlen(from);
if (!hlen)
hlen = from->len;
}
if (skb_has_frag_list(from))
hlen = from->len;
return hlen;
}
EXPORT_SYMBOL_GPL(skb_zerocopy_headlen);
/**
* skb_zerocopy - Zero copy skb to skb
* @to: destination buffer
* @from: source buffer
* @len: number of bytes to copy from source buffer
* @hlen: size of linear headroom in destination buffer
*
* Copies up to `len` bytes from `from` to `to` by creating references
* to the frags in the source buffer.
*
* The `hlen` as calculated by skb_zerocopy_headlen() specifies the
* headroom in the `to` buffer.
*
* Return value:
* 0: everything is OK
* -ENOMEM: couldn't orphan frags of @from due to lack of memory
* -EFAULT: skb_copy_bits() found some problem with skb geometry
*/
int
skb_zerocopy(struct sk_buff *to, struct sk_buff *from, int len, int hlen)
{
int i, j = 0;
int plen = 0; /* length of skb->head fragment */
int ret;
struct page *page;
unsigned int offset;
BUG_ON(!from->head_frag && !hlen);
/* dont bother with small payloads */
if (len <= skb_tailroom(to))
return skb_copy_bits(from, 0, skb_put(to, len), len);
if (hlen) {
ret = skb_copy_bits(from, 0, skb_put(to, hlen), hlen);
if (unlikely(ret))
return ret;
len -= hlen;
} else {
plen = min_t(int, skb_headlen(from), len);
if (plen) {
page = virt_to_head_page(from->head);
offset = from->data - (unsigned char *)page_address(page);
__skb_fill_page_desc(to, 0, page, offset, plen);
get_page(page);
j = 1;
len -= plen;
}
}
to->truesize += len + plen;
to->len += len + plen;
to->data_len += len + plen;
if (unlikely(skb_orphan_frags(from, GFP_ATOMIC))) {
skb_tx_error(from);
return -ENOMEM;
}
skb_zerocopy_clone(to, from, GFP_ATOMIC);
for (i = 0; i < skb_shinfo(from)->nr_frags; i++) {
int size;
if (!len)
break;
skb_shinfo(to)->frags[j] = skb_shinfo(from)->frags[i];
size = min_t(int, skb_frag_size(&skb_shinfo(to)->frags[j]),
len);
skb_frag_size_set(&skb_shinfo(to)->frags[j], size);
len -= size;
skb_frag_ref(to, j);
j++;
}
skb_shinfo(to)->nr_frags = j;
return 0;
}
EXPORT_SYMBOL_GPL(skb_zerocopy);
void skb_copy_and_csum_dev(const struct sk_buff *skb, u8 *to)
{
__wsum csum;
long csstart;
if (skb->ip_summed == CHECKSUM_PARTIAL)
csstart = skb_checksum_start_offset(skb);
else
csstart = skb_headlen(skb);
BUG_ON(csstart > skb_headlen(skb));
skb_copy_from_linear_data(skb, to, csstart);
csum = 0;
if (csstart != skb->len)
csum = skb_copy_and_csum_bits(skb, csstart, to + csstart,
skb->len - csstart);
if (skb->ip_summed == CHECKSUM_PARTIAL) {
long csstuff = csstart + skb->csum_offset;
*((__sum16 *)(to + csstuff)) = csum_fold(csum);
}
}
EXPORT_SYMBOL(skb_copy_and_csum_dev);
/**
* skb_dequeue - remove from the head of the queue
* @list: list to dequeue from
*
* Remove the head of the list. The list lock is taken so the function
* may be used safely with other locking list functions. The head item is
* returned or %NULL if the list is empty.
*/
struct sk_buff *skb_dequeue(struct sk_buff_head *list)
{
unsigned long flags;
struct sk_buff *result;
spin_lock_irqsave(&list->lock, flags);
result = __skb_dequeue(list);
spin_unlock_irqrestore(&list->lock, flags);
return result;
}
EXPORT_SYMBOL(skb_dequeue);
/**
* skb_dequeue_tail - remove from the tail of the queue
* @list: list to dequeue from
*
* Remove the tail of the list. The list lock is taken so the function
* may be used safely with other locking list functions. The tail item is
* returned or %NULL if the list is empty.
*/
struct sk_buff *skb_dequeue_tail(struct sk_buff_head *list)
{
unsigned long flags;
struct sk_buff *result;
spin_lock_irqsave(&list->lock, flags);
result = __skb_dequeue_tail(list);
spin_unlock_irqrestore(&list->lock, flags);
return result;
}
EXPORT_SYMBOL(skb_dequeue_tail);
/**
* skb_queue_purge - empty a list
* @list: list to empty
*
* Delete all buffers on an &sk_buff list. Each buffer is removed from
* the list and one reference dropped. This function takes the list
* lock and is atomic with respect to other list locking functions.
*/
void skb_queue_purge(struct sk_buff_head *list)
{
struct sk_buff *skb;
while ((skb = skb_dequeue(list)) != NULL)
kfree_skb(skb);
}
EXPORT_SYMBOL(skb_queue_purge);
/**
* skb_rbtree_purge - empty a skb rbtree
* @root: root of the rbtree to empty
* Return value: the sum of truesizes of all purged skbs.
*
* Delete all buffers on an &sk_buff rbtree. Each buffer is removed from
* the list and one reference dropped. This function does not take
* any lock. Synchronization should be handled by the caller (e.g., TCP
* out-of-order queue is protected by the socket lock).
*/
unsigned int skb_rbtree_purge(struct rb_root *root)
{
struct rb_node *p = rb_first(root);
unsigned int sum = 0;
while (p) {
struct sk_buff *skb = rb_entry(p, struct sk_buff, rbnode);
p = rb_next(p);
rb_erase(&skb->rbnode, root);
sum += skb->truesize;
kfree_skb(skb);
}
return sum;
}
/**
* skb_queue_head - queue a buffer at the list head
* @list: list to use
* @newsk: buffer to queue
*
* Queue a buffer at the start of the list. This function takes the
* list lock and can be used safely with other locking &sk_buff functions
* safely.
*
* 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)
{
unsigned long flags;
spin_lock_irqsave(&list->lock, flags);
__skb_queue_head(list, newsk);
spin_unlock_irqrestore(&list->lock, flags);
}
EXPORT_SYMBOL(skb_queue_head);
/**
* skb_queue_tail - queue a buffer at the list tail
* @list: list to use
* @newsk: buffer to queue
*
* Queue a buffer at the tail of the list. This function takes the
* list lock and can be used safely with other locking &sk_buff functions
* safely.
*
* 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)
{
unsigned long flags;
spin_lock_irqsave(&list->lock, flags);
__skb_queue_tail(list, newsk);
spin_unlock_irqrestore(&list->lock, flags);
}
EXPORT_SYMBOL(skb_queue_tail);
/**
* skb_unlink - remove a buffer from a list
* @skb: buffer to remove
* @list: list to use
*
* Remove a packet from a list. The list locks are taken and this
* function is atomic with respect to other list locked calls
*
* You must know what list the SKB is on.
*/
void skb_unlink(struct sk_buff *skb, struct sk_buff_head *list)
{
unsigned long flags;
spin_lock_irqsave(&list->lock, flags);
__skb_unlink(skb, list);
spin_unlock_irqrestore(&list->lock, flags);
}
EXPORT_SYMBOL(skb_unlink);
/**
* skb_append - append a buffer
* @old: buffer to insert after
* @newsk: buffer to insert
* @list: list to use
*
* Place a packet after a given packet in a list. The list locks are taken
* and this function is atomic with respect to other list locked calls.
* A buffer cannot be placed on two lists at the same time.
*/
void skb_append(struct sk_buff *old, struct sk_buff *newsk, struct sk_buff_head *list)
{
unsigned long flags;
spin_lock_irqsave(&list->lock, flags);
__skb_queue_after(list, old, newsk);
spin_unlock_irqrestore(&list->lock, flags);
}
EXPORT_SYMBOL(skb_append);
static inline void skb_split_inside_header(struct sk_buff *skb,
struct sk_buff* skb1,
const u32 len, const int pos)
{
int i;
skb_copy_from_linear_data_offset(skb, len, skb_put(skb1, pos - len),
pos - len);
/* And move data appendix as is. */
for (i = 0; i < skb_shinfo(skb)->nr_frags; i++)
skb_shinfo(skb1)->frags[i] = skb_shinfo(skb)->frags[i];
skb_shinfo(skb1)->nr_frags = skb_shinfo(skb)->nr_frags;
skb_shinfo(skb)->nr_frags = 0;
skb1->data_len = skb->data_len;
skb1->len += skb1->data_len;
skb->data_len = 0;
skb->len = len;
skb_set_tail_pointer(skb, len);
}
static inline void skb_split_no_header(struct sk_buff *skb,
struct sk_buff* skb1,
const u32 len, int pos)
{
int i, k = 0;
const int nfrags = skb_shinfo(skb)->nr_frags;
skb_shinfo(skb)->nr_frags = 0;
skb1->len = skb1->data_len = skb->len - len;
skb->len = len;
skb->data_len = len - pos;
for (i = 0; i < nfrags; i++) {
int size = skb_frag_size(&skb_shinfo(skb)->frags[i]);
if (pos + size > len) {
skb_shinfo(skb1)->frags[k] = skb_shinfo(skb)->frags[i];
if (pos < len) {
/* Split frag.
* We have two variants in this case:
* 1. Move all the frag to the second
* part, if it is possible. F.e.
* this approach is mandatory for TUX,
* where splitting is expensive.
* 2. Split is accurately. We make this.
*/
skb_frag_ref(skb, i);
skb_frag_off_add(&skb_shinfo(skb1)->frags[0], len - pos);
skb_frag_size_sub(&skb_shinfo(skb1)->frags[0], len - pos);
skb_frag_size_set(&skb_shinfo(skb)->frags[i], len - pos);
skb_shinfo(skb)->nr_frags++;
}
k++;
} else
skb_shinfo(skb)->nr_frags++;
pos += size;
}
skb_shinfo(skb1)->nr_frags = k;
}
/**
* skb_split - Split fragmented skb to two parts at length len.
* @skb: the buffer to split
* @skb1: the buffer to receive the second part
* @len: new length for skb
*/
void skb_split(struct sk_buff *skb, struct sk_buff *skb1, const u32 len)
{
int pos = skb_headlen(skb);
skb_shinfo(skb1)->tx_flags |= skb_shinfo(skb)->tx_flags &
SKBTX_SHARED_FRAG;
skb_zerocopy_clone(skb1, skb, 0);
if (len < pos) /* Split line is inside header. */
skb_split_inside_header(skb, skb1, len, pos);
else /* Second chunk has no header, nothing to copy. */
skb_split_no_header(skb, skb1, len, pos);
}
EXPORT_SYMBOL(skb_split);
/* Shifting from/to a cloned skb is a no-go.
*
* Caller cannot keep skb_shinfo related pointers past calling here!
*/
static int skb_prepare_for_shift(struct sk_buff *skb)
{
return skb_unclone_keeptruesize(skb, GFP_ATOMIC);
}
/**
* skb_shift - Shifts paged data partially from skb to another
* @tgt: buffer into which tail data gets added
* @skb: buffer from which the paged data comes from
* @shiftlen: shift up to this many bytes
*
* Attempts to shift up to shiftlen worth of bytes, which may be less than
* the length of the skb, from skb to tgt. Returns number bytes shifted.
* It's up to caller to free skb if everything was shifted.
*
* If @tgt runs out of frags, the whole operation is aborted.
*
* Skb cannot include anything else but paged data while tgt is allowed
* to have non-paged data as well.
*
* TODO: full sized shift could be optimized but that would need
* specialized skb free'er to handle frags without up-to-date nr_frags.
*/
int skb_shift(struct sk_buff *tgt, struct sk_buff *skb, int shiftlen)
{
int from, to, merge, todo;
skb_frag_t *fragfrom, *fragto;
BUG_ON(shiftlen > skb->len);
if (skb_headlen(skb))
return 0;
if (skb_zcopy(tgt) || skb_zcopy(skb))
return 0;
todo = shiftlen;
from = 0;
to = skb_shinfo(tgt)->nr_frags;
fragfrom = &skb_shinfo(skb)->frags[from];
/* Actual merge is delayed until the point when we know we can
* commit all, so that we don't have to undo partial changes
*/
if (!to ||
!skb_can_coalesce(tgt, to, skb_frag_page(fragfrom),
skb_frag_off(fragfrom))) {
merge = -1;
} else {
merge = to - 1;
todo -= skb_frag_size(fragfrom);
if (todo < 0) {
if (skb_prepare_for_shift(skb) ||
skb_prepare_for_shift(tgt))
return 0;
/* All previous frag pointers might be stale! */
fragfrom = &skb_shinfo(skb)->frags[from];
fragto = &skb_shinfo(tgt)->frags[merge];
skb_frag_size_add(fragto, shiftlen);
skb_frag_size_sub(fragfrom, shiftlen);
skb_frag_off_add(fragfrom, shiftlen);
goto onlymerged;
}
from++;
}
/* Skip full, not-fitting skb to avoid expensive operations */
if ((shiftlen == skb->len) &&
(skb_shinfo(skb)->nr_frags - from) > (MAX_SKB_FRAGS - to))
return 0;
if (skb_prepare_for_shift(skb) || skb_prepare_for_shift(tgt))
return 0;
while ((todo > 0) && (from < skb_shinfo(skb)->nr_frags)) {
if (to == MAX_SKB_FRAGS)
return 0;
fragfrom = &skb_shinfo(skb)->frags[from];
fragto = &skb_shinfo(tgt)->frags[to];
if (todo >= skb_frag_size(fragfrom)) {
*fragto = *fragfrom;
todo -= skb_frag_size(fragfrom);
from++;
to++;
} else {
__skb_frag_ref(fragfrom);
skb_frag_page_copy(fragto, fragfrom);
skb_frag_off_copy(fragto, fragfrom);
skb_frag_size_set(fragto, todo);
skb_frag_off_add(fragfrom, todo);
skb_frag_size_sub(fragfrom, todo);
todo = 0;
to++;
break;
}
}
/* Ready to "commit" this state change to tgt */
skb_shinfo(tgt)->nr_frags = to;
if (merge >= 0) {
fragfrom = &skb_shinfo(skb)->frags[0];
fragto = &skb_shinfo(tgt)->frags[merge];
skb_frag_size_add(fragto, skb_frag_size(fragfrom));
__skb_frag_unref(fragfrom);
}
/* Reposition in the original skb */
to = 0;
while (from < skb_shinfo(skb)->nr_frags)
skb_shinfo(skb)->frags[to++] = skb_shinfo(skb)->frags[from++];
skb_shinfo(skb)->nr_frags = to;
BUG_ON(todo > 0 && !skb_shinfo(skb)->nr_frags);
onlymerged:
/* Most likely the tgt won't ever need its checksum anymore, skb on
* the other hand might need it if it needs to be resent
*/
tgt->ip_summed = CHECKSUM_PARTIAL;
skb->ip_summed = CHECKSUM_PARTIAL;
/* Yak, is it really working this way? Some helper please? */
skb->len -= shiftlen;
skb->data_len -= shiftlen;
skb->truesize -= shiftlen;
tgt->len += shiftlen;
tgt->data_len += shiftlen;
tgt->truesize += shiftlen;
return shiftlen;
}
/**
* skb_prepare_seq_read - Prepare a sequential read of skb data
* @skb: the buffer to read
* @from: lower offset of data to be read
* @to: upper offset of data to be read
* @st: state variable
*
* Initializes the specified state variable. Must be called before
* invoking skb_seq_read() for the first time.
*/
void skb_prepare_seq_read(struct sk_buff *skb, unsigned int from,
unsigned int to, struct skb_seq_state *st)
{
st->lower_offset = from;
st->upper_offset = to;
st->root_skb = st->cur_skb = skb;
st->frag_idx = st->stepped_offset = 0;
st->frag_data = NULL;
}
EXPORT_SYMBOL(skb_prepare_seq_read);
/**
* skb_seq_read - Sequentially read skb data
* @consumed: number of bytes consumed by the caller so far
* @data: destination pointer for data to be returned
* @st: state variable
*
* Reads a block of skb data at @consumed relative to the
* lower offset specified to skb_prepare_seq_read(). Assigns
* the head of the data block to @data and returns the length
* of the block or 0 if the end of the skb data or the upper
* offset has been reached.
*
* The caller is not required to consume all of the data
* returned, i.e. @consumed is typically set to the number
* of bytes already consumed and the next call to
* skb_seq_read() will return the remaining part of the block.
*
* Note 1: The size of each block of data returned can be arbitrary,
* this limitation is the cost for zerocopy sequential
* reads of potentially non linear data.
*
* Note 2: Fragment lists within fragments are not implemented
* at the moment, state->root_skb could be replaced with
* a stack for this purpose.
*/
unsigned int skb_seq_read(unsigned int consumed, const u8 **data,
struct skb_seq_state *st)
{
unsigned int block_limit, abs_offset = consumed + st->lower_offset;
skb_frag_t *frag;
if (unlikely(abs_offset >= st->upper_offset)) {
if (st->frag_data) {
kunmap_atomic(st->frag_data);
st->frag_data = NULL;
}
return 0;
}
next_skb:
block_limit = skb_headlen(st->cur_skb) + st->stepped_offset;
if (abs_offset < block_limit && !st->frag_data) {
*data = st->cur_skb->data + (abs_offset - st->stepped_offset);
return block_limit - abs_offset;
}
if (st->frag_idx == 0 && !st->frag_data)
st->stepped_offset += skb_headlen(st->cur_skb);
while (st->frag_idx < skb_shinfo(st->cur_skb)->nr_frags) {
frag = &skb_shinfo(st->cur_skb)->frags[st->frag_idx];
block_limit = skb_frag_size(frag) + st->stepped_offset;
if (abs_offset < block_limit) {
if (!st->frag_data)
st->frag_data = kmap_atomic(skb_frag_page(frag));
*data = (u8 *) st->frag_data + skb_frag_off(frag) +
(abs_offset - st->stepped_offset);
return block_limit - abs_offset;
}
if (st->frag_data) {
kunmap_atomic(st->frag_data);
st->frag_data = NULL;
}
st->frag_idx++;
st->stepped_offset += skb_frag_size(frag);
}
if (st->frag_data) {
kunmap_atomic(st->frag_data);
st->frag_data = NULL;
}
if (st->root_skb == st->cur_skb && skb_has_frag_list(st->root_skb)) {
st->cur_skb = skb_shinfo(st->root_skb)->frag_list;
st->frag_idx = 0;
goto next_skb;
} else if (st->cur_skb->next) {
st->cur_skb = st->cur_skb->next;
st->frag_idx = 0;
goto next_skb;
}
return 0;
}
EXPORT_SYMBOL(skb_seq_read);
/**
* skb_abort_seq_read - Abort a sequential read of skb data
* @st: state variable
*
* Must be called if skb_seq_read() was not called until it
* returned 0.
*/
void skb_abort_seq_read(struct skb_seq_state *st)
{
if (st->frag_data)
kunmap_atomic(st->frag_data);
}
EXPORT_SYMBOL(skb_abort_seq_read);
#define TS_SKB_CB(state) ((struct skb_seq_state *) &((state)->cb))
static unsigned int skb_ts_get_next_block(unsigned int offset, const u8 **text,
struct ts_config *conf,
struct ts_state *state)
{
return skb_seq_read(offset, text, TS_SKB_CB(state));
}
static void skb_ts_finish(struct ts_config *conf, struct ts_state *state)
{
skb_abort_seq_read(TS_SKB_CB(state));
}
/**
* skb_find_text - Find a text pattern in skb data
* @skb: the buffer to look in
* @from: search offset
* @to: search limit
* @config: textsearch configuration
*
* Finds a pattern in the skb data according to the specified
* textsearch configuration. Use textsearch_next() to retrieve
* subsequent occurrences of the pattern. Returns the offset
* to the first occurrence or UINT_MAX if no match was found.
*/
unsigned int skb_find_text(struct sk_buff *skb, unsigned int from,
unsigned int to, struct ts_config *config)
{
struct ts_state state;
unsigned int ret;
config->get_next_block = skb_ts_get_next_block;
config->finish = skb_ts_finish;
skb_prepare_seq_read(skb, from, to, TS_SKB_CB(&state));
ret = textsearch_find(config, &state);
return (ret <= to - from ? ret : UINT_MAX);
}
EXPORT_SYMBOL(skb_find_text);
int skb_append_pagefrags(struct sk_buff *skb, struct page *page,
int offset, size_t size)
{
int i = skb_shinfo(skb)->nr_frags;
if (skb_can_coalesce(skb, i, page, offset)) {
skb_frag_size_add(&skb_shinfo(skb)->frags[i - 1], size);
} else if (i < MAX_SKB_FRAGS) {
get_page(page);
skb_fill_page_desc(skb, i, page, offset, size);
} else {
return -EMSGSIZE;
}
return 0;
}
EXPORT_SYMBOL_GPL(skb_append_pagefrags);
/**
* skb_pull_rcsum - pull skb and update receive checksum
* @skb: buffer to update
* @len: length of data pulled
*
* This function performs an skb_pull on the packet and updates
* the CHECKSUM_COMPLETE checksum. It should be used on
* receive path processing instead of skb_pull unless you know
* that the checksum difference is zero (e.g., a valid IP header)
* or you are setting ip_summed to CHECKSUM_NONE.
*/
void *skb_pull_rcsum(struct sk_buff *skb, unsigned int len)
{
unsigned char *data = skb->data;
BUG_ON(len > skb->len);
__skb_pull(skb, len);
skb_postpull_rcsum(skb, data, len);
return skb->data;
}
EXPORT_SYMBOL_GPL(skb_pull_rcsum);
static inline skb_frag_t skb_head_frag_to_page_desc(struct sk_buff *frag_skb)
{
skb_frag_t head_frag;
struct page *page;
page = virt_to_head_page(frag_skb->head);
__skb_frag_set_page(&head_frag, page);
skb_frag_off_set(&head_frag, frag_skb->data -
(unsigned char *)page_address(page));
skb_frag_size_set(&head_frag, skb_headlen(frag_skb));
return head_frag;
}
struct sk_buff *skb_segment_list(struct sk_buff *skb,
netdev_features_t features,
unsigned int offset)
{
struct sk_buff *list_skb = skb_shinfo(skb)->frag_list;
unsigned int tnl_hlen = skb_tnl_header_len(skb);
unsigned int delta_truesize = 0;
unsigned int delta_len = 0;
struct sk_buff *tail = NULL;
struct sk_buff *nskb, *tmp;
int len_diff, err;
skb_push(skb, -skb_network_offset(skb) + offset);
skb_shinfo(skb)->frag_list = NULL;
do {
nskb = list_skb;
list_skb = list_skb->next;
err = 0;
delta_truesize += nskb->truesize;
if (skb_shared(nskb)) {
tmp = skb_clone(nskb, GFP_ATOMIC);
if (tmp) {
consume_skb(nskb);
nskb = tmp;
err = skb_unclone(nskb, GFP_ATOMIC);
} else {
err = -ENOMEM;
}
}
if (!tail)
skb->next = nskb;
else
tail->next = nskb;
if (unlikely(err)) {
nskb->next = list_skb;
goto err_linearize;
}
tail = nskb;
delta_len += nskb->len;
skb_push(nskb, -skb_network_offset(nskb) + offset);
skb_release_head_state(nskb);
len_diff = skb_network_header_len(nskb) - skb_network_header_len(skb);
__copy_skb_header(nskb, skb);
skb_headers_offset_update(nskb, skb_headroom(nskb) - skb_headroom(skb));
nskb->transport_header += len_diff;
skb_copy_from_linear_data_offset(skb, -tnl_hlen,
nskb->data - tnl_hlen,
offset + tnl_hlen);
if (skb_needs_linearize(nskb, features) &&
__skb_linearize(nskb))
goto err_linearize;
} while (list_skb);
skb->truesize = skb->truesize - delta_truesize;
skb->data_len = skb->data_len - delta_len;
skb->len = skb->len - delta_len;
skb_gso_reset(skb);
skb->prev = tail;
if (skb_needs_linearize(skb, features) &&
__skb_linearize(skb))
goto err_linearize;
skb_get(skb);
return skb;
err_linearize:
kfree_skb_list(skb->next);
skb->next = NULL;
return ERR_PTR(-ENOMEM);
}
EXPORT_SYMBOL_GPL(skb_segment_list);
int skb_gro_receive_list(struct sk_buff *p, struct sk_buff *skb)
{
if (unlikely(p->len + skb->len >= 65536))
return -E2BIG;
if (NAPI_GRO_CB(p)->last == p)
skb_shinfo(p)->frag_list = skb;
else
NAPI_GRO_CB(p)->last->next = skb;
skb_pull(skb, skb_gro_offset(skb));
NAPI_GRO_CB(p)->last = skb;
NAPI_GRO_CB(p)->count++;
p->data_len += skb->len;
p->truesize += skb->truesize;
p->len += skb->len;
NAPI_GRO_CB(skb)->same_flow = 1;
return 0;
}
/**
* skb_segment - Perform protocol segmentation on skb.
* @head_skb: buffer to segment
* @features: features for the output path (see dev->features)
*
* This function performs segmentation on the given skb. It returns
* a pointer to the first in a list of new skbs for the segments.
* In case of error it returns ERR_PTR(err).
*/
struct sk_buff *skb_segment(struct sk_buff *head_skb,
netdev_features_t features)
{
struct sk_buff *segs = NULL;
struct sk_buff *tail = NULL;
struct sk_buff *list_skb = skb_shinfo(head_skb)->frag_list;
skb_frag_t *frag = skb_shinfo(head_skb)->frags;
unsigned int mss = skb_shinfo(head_skb)->gso_size;
unsigned int doffset = head_skb->data - skb_mac_header(head_skb);
struct sk_buff *frag_skb = head_skb;
unsigned int offset = doffset;
unsigned int tnl_hlen = skb_tnl_header_len(head_skb);
unsigned int partial_segs = 0;
unsigned int headroom;
unsigned int len = head_skb->len;
__be16 proto;
bool csum, sg;
int nfrags = skb_shinfo(head_skb)->nr_frags;
int err = -ENOMEM;
int i = 0;
int pos;
if (list_skb && !list_skb->head_frag && skb_headlen(list_skb) &&
(skb_shinfo(head_skb)->gso_type & SKB_GSO_DODGY)) {
/* gso_size is untrusted, and we have a frag_list with a linear
* non head_frag head.
*
* (we assume checking the first list_skb member suffices;
* i.e if either of the list_skb members have non head_frag
* head, then the first one has too).
*
* If head_skb's headlen does not fit requested gso_size, it
* means that the frag_list members do NOT terminate on exact
* gso_size boundaries. Hence we cannot perform skb_frag_t page
* sharing. Therefore we must fallback to copying the frag_list
* skbs; we do so by disabling SG.
*/
if (mss != GSO_BY_FRAGS && mss != skb_headlen(head_skb))
features &= ~NETIF_F_SG;
}
__skb_push(head_skb, doffset);
proto = skb_network_protocol(head_skb, NULL);
if (unlikely(!proto))
return ERR_PTR(-EINVAL);
sg = !!(features & NETIF_F_SG);
csum = !!can_checksum_protocol(features, proto);
if (sg && csum && (mss != GSO_BY_FRAGS)) {
if (!(features & NETIF_F_GSO_PARTIAL)) {
struct sk_buff *iter;
unsigned int frag_len;
if (!list_skb ||
!net_gso_ok(features, skb_shinfo(head_skb)->gso_type))
goto normal;
/* If we get here then all the required
* GSO features except frag_list are supported.
* Try to split the SKB to multiple GSO SKBs
* with no frag_list.
* Currently we can do that only when the buffers don't
* have a linear part and all the buffers except
* the last are of the same length.
*/
frag_len = list_skb->len;
skb_walk_frags(head_skb, iter) {
if (frag_len != iter->len && iter->next)
goto normal;
if (skb_headlen(iter) && !iter->head_frag)
goto normal;
len -= iter->len;
}
if (len != frag_len)
goto normal;
}
/* GSO partial only requires that we trim off any excess that
* doesn't fit into an MSS sized block, so take care of that
* now.
*/
partial_segs = len / mss;
if (partial_segs > 1)
mss *= partial_segs;
else
partial_segs = 0;
}
normal:
headroom = skb_headroom(head_skb);
pos = skb_headlen(head_skb);
do {
struct sk_buff *nskb;
skb_frag_t *nskb_frag;
int hsize;
int size;
if (unlikely(mss == GSO_BY_FRAGS)) {
len = list_skb->len;
} else {
len = head_skb->len - offset;
if (len > mss)
len = mss;
}
hsize = skb_headlen(head_skb) - offset;
if (hsize < 0)
hsize = 0;
if (hsize > len || !sg)
hsize = len;
if (!hsize && i >= nfrags && skb_headlen(list_skb) &&
(skb_headlen(list_skb) == len || sg)) {
BUG_ON(skb_headlen(list_skb) > len);
i = 0;
nfrags = skb_shinfo(list_skb)->nr_frags;
frag = skb_shinfo(list_skb)->frags;
frag_skb = list_skb;
pos += skb_headlen(list_skb);
while (pos < offset + len) {
BUG_ON(i >= nfrags);
size = skb_frag_size(frag);
if (pos + size > offset + len)
break;
i++;
pos += size;
frag++;
}
nskb = skb_clone(list_skb, GFP_ATOMIC);
list_skb = list_skb->next;
if (unlikely(!nskb))
goto err;
if (unlikely(pskb_trim(nskb, len))) {
kfree_skb(nskb);
goto err;
}
hsize = skb_end_offset(nskb);
if (skb_cow_head(nskb, doffset + headroom)) {
kfree_skb(nskb);
goto err;
}
nskb->truesize += skb_end_offset(nskb) - hsize;
skb_release_head_state(nskb);
__skb_push(nskb, doffset);
} else {
nskb = __alloc_skb(hsize + doffset + headroom,
GFP_ATOMIC, skb_alloc_rx_flag(head_skb),
NUMA_NO_NODE);
if (unlikely(!nskb))
goto err;
skb_reserve(nskb, headroom);
__skb_put(nskb, doffset);
}
if (segs)
tail->next = nskb;
else
segs = nskb;
tail = nskb;
__copy_skb_header(nskb, head_skb);
skb_headers_offset_update(nskb, skb_headroom(nskb) - headroom);
skb_reset_mac_len(nskb);
skb_copy_from_linear_data_offset(head_skb, -tnl_hlen,
nskb->data - tnl_hlen,
doffset + tnl_hlen);
if (nskb->len == len + doffset)
goto perform_csum_check;
if (!sg) {
if (!csum) {
if (!nskb->remcsum_offload)
nskb->ip_summed = CHECKSUM_NONE;
SKB_GSO_CB(nskb)->csum =
skb_copy_and_csum_bits(head_skb, offset,
skb_put(nskb,
len),
len);
SKB_GSO_CB(nskb)->csum_start =
skb_headroom(nskb) + doffset;
} else {
skb_copy_bits(head_skb, offset,
skb_put(nskb, len),
len);
}
continue;
}
nskb_frag = skb_shinfo(nskb)->frags;
skb_copy_from_linear_data_offset(head_skb, offset,
skb_put(nskb, hsize), hsize);
skb_shinfo(nskb)->tx_flags |= skb_shinfo(head_skb)->tx_flags &
SKBTX_SHARED_FRAG;
if (skb_orphan_frags(frag_skb, GFP_ATOMIC) ||
skb_zerocopy_clone(nskb, frag_skb, GFP_ATOMIC))
goto err;
while (pos < offset + len) {
if (i >= nfrags) {
i = 0;
nfrags = skb_shinfo(list_skb)->nr_frags;
frag = skb_shinfo(list_skb)->frags;
frag_skb = list_skb;
if (!skb_headlen(list_skb)) {
BUG_ON(!nfrags);
} else {
BUG_ON(!list_skb->head_frag);
/* to make room for head_frag. */
i--;
frag--;
}
if (skb_orphan_frags(frag_skb, GFP_ATOMIC) ||
skb_zerocopy_clone(nskb, frag_skb,
GFP_ATOMIC))
goto err;
list_skb = list_skb->next;
}
if (unlikely(skb_shinfo(nskb)->nr_frags >=
MAX_SKB_FRAGS)) {
net_warn_ratelimited(
"skb_segment: too many frags: %u %u\n",
pos, mss);
err = -EINVAL;
goto err;
}
*nskb_frag = (i < 0) ? skb_head_frag_to_page_desc(frag_skb) : *frag;
__skb_frag_ref(nskb_frag);
size = skb_frag_size(nskb_frag);
if (pos < offset) {
skb_frag_off_add(nskb_frag, offset - pos);
skb_frag_size_sub(nskb_frag, offset - pos);
}
skb_shinfo(nskb)->nr_frags++;
if (pos + size <= offset + len) {
i++;
frag++;
pos += size;
} else {
skb_frag_size_sub(nskb_frag, pos + size - (offset + len));
goto skip_fraglist;
}
nskb_frag++;
}
skip_fraglist:
nskb->data_len = len - hsize;
nskb->len += nskb->data_len;
nskb->truesize += nskb->data_len;
perform_csum_check:
if (!csum) {
if (skb_has_shared_frag(nskb) &&
__skb_linearize(nskb))
goto err;
if (!nskb->remcsum_offload)
nskb->ip_summed = CHECKSUM_NONE;
SKB_GSO_CB(nskb)->csum =
skb_checksum(nskb, doffset,
nskb->len - doffset, 0);
SKB_GSO_CB(nskb)->csum_start =
skb_headroom(nskb) + doffset;
}
} while ((offset += len) < head_skb->len);
/* Some callers want to get the end of the list.
* Put it in segs->prev to avoid walking the list.
* (see validate_xmit_skb_list() for example)
*/
segs->prev = tail;
if (partial_segs) {
struct sk_buff *iter;
int type = skb_shinfo(head_skb)->gso_type;
unsigned short gso_size = skb_shinfo(head_skb)->gso_size;
/* Update type to add partial and then remove dodgy if set */
type |= (features & NETIF_F_GSO_PARTIAL) / NETIF_F_GSO_PARTIAL * SKB_GSO_PARTIAL;
type &= ~SKB_GSO_DODGY;
/* Update GSO info and prepare to start updating headers on
* our way back down the stack of protocols.
*/
for (iter = segs; iter; iter = iter->next) {
skb_shinfo(iter)->gso_size = gso_size;
skb_shinfo(iter)->gso_segs = partial_segs;
skb_shinfo(iter)->gso_type = type;
SKB_GSO_CB(iter)->data_offset = skb_headroom(iter) + doffset;
}
if (tail->len - doffset <= gso_size)
skb_shinfo(tail)->gso_size = 0;
else if (tail != segs)
skb_shinfo(tail)->gso_segs = DIV_ROUND_UP(tail->len - doffset, gso_size);
}
/* Following permits correct backpressure, for protocols
* using skb_set_owner_w().
* Idea is to tranfert ownership from head_skb to last segment.
*/
if (head_skb->destructor == sock_wfree) {
swap(tail->truesize, head_skb->truesize);
swap(tail->destructor, head_skb->destructor);
swap(tail->sk, head_skb->sk);
}
return segs;
err:
kfree_skb_list(segs);
return ERR_PTR(err);
}
EXPORT_SYMBOL_GPL(skb_segment);
int skb_gro_receive(struct sk_buff *p, struct sk_buff *skb)
{
struct skb_shared_info *pinfo, *skbinfo = skb_shinfo(skb);
unsigned int offset = skb_gro_offset(skb);
unsigned int headlen = skb_headlen(skb);
unsigned int len = skb_gro_len(skb);
unsigned int delta_truesize;
struct sk_buff *lp;
if (unlikely(p->len + len >= 65536 || NAPI_GRO_CB(skb)->flush))
return -E2BIG;
lp = NAPI_GRO_CB(p)->last;
pinfo = skb_shinfo(lp);
if (headlen <= offset) {
skb_frag_t *frag;
skb_frag_t *frag2;
int i = skbinfo->nr_frags;
int nr_frags = pinfo->nr_frags + i;
if (nr_frags > MAX_SKB_FRAGS)
goto merge;
offset -= headlen;
pinfo->nr_frags = nr_frags;
skbinfo->nr_frags = 0;
frag = pinfo->frags + nr_frags;
frag2 = skbinfo->frags + i;
do {
*--frag = *--frag2;
} while (--i);
skb_frag_off_add(frag, offset);
skb_frag_size_sub(frag, offset);
/* all fragments truesize : remove (head size + sk_buff) */
delta_truesize = skb->truesize -
SKB_TRUESIZE(skb_end_offset(skb));
skb->truesize -= skb->data_len;
skb->len -= skb->data_len;
skb->data_len = 0;
NAPI_GRO_CB(skb)->free = NAPI_GRO_FREE;
goto done;
} else if (skb->head_frag) {
int nr_frags = pinfo->nr_frags;
skb_frag_t *frag = pinfo->frags + nr_frags;
struct page *page = virt_to_head_page(skb->head);
unsigned int first_size = headlen - offset;
unsigned int first_offset;
if (nr_frags + 1 + skbinfo->nr_frags > MAX_SKB_FRAGS)
goto merge;
first_offset = skb->data -
(unsigned char *)page_address(page) +
offset;
pinfo->nr_frags = nr_frags + 1 + skbinfo->nr_frags;
__skb_frag_set_page(frag, page);
skb_frag_off_set(frag, first_offset);
skb_frag_size_set(frag, first_size);
memcpy(frag + 1, skbinfo->frags, sizeof(*frag) * skbinfo->nr_frags);
/* We dont need to clear skbinfo->nr_frags here */
delta_truesize = skb->truesize - SKB_DATA_ALIGN(sizeof(struct sk_buff));
NAPI_GRO_CB(skb)->free = NAPI_GRO_FREE_STOLEN_HEAD;
goto done;
}
merge:
delta_truesize = skb->truesize;
if (offset > headlen) {
unsigned int eat = offset - headlen;
skb_frag_off_add(&skbinfo->frags[0], eat);
skb_frag_size_sub(&skbinfo->frags[0], eat);
skb->data_len -= eat;
skb->len -= eat;
offset = headlen;
}
__skb_pull(skb, offset);
if (NAPI_GRO_CB(p)->last == p)
skb_shinfo(p)->frag_list = skb;
else
NAPI_GRO_CB(p)->last->next = skb;
NAPI_GRO_CB(p)->last = skb;
__skb_header_release(skb);
lp = p;
done:
NAPI_GRO_CB(p)->count++;
p->data_len += len;
p->truesize += delta_truesize;
p->len += len;
if (lp != p) {
lp->data_len += len;
lp->truesize += delta_truesize;
lp->len += len;
}
NAPI_GRO_CB(skb)->same_flow = 1;
return 0;
}
#ifdef CONFIG_SKB_EXTENSIONS
#define SKB_EXT_ALIGN_VALUE 8
#define SKB_EXT_CHUNKSIZEOF(x) (ALIGN((sizeof(x)), SKB_EXT_ALIGN_VALUE) / SKB_EXT_ALIGN_VALUE)
static const u8 skb_ext_type_len[] = {
#if IS_ENABLED(CONFIG_BRIDGE_NETFILTER)
[SKB_EXT_BRIDGE_NF] = SKB_EXT_CHUNKSIZEOF(struct nf_bridge_info),
#endif
#ifdef CONFIG_XFRM
[SKB_EXT_SEC_PATH] = SKB_EXT_CHUNKSIZEOF(struct sec_path),
#endif
#if IS_ENABLED(CONFIG_NET_TC_SKB_EXT)
[TC_SKB_EXT] = SKB_EXT_CHUNKSIZEOF(struct tc_skb_ext),
#endif
#if IS_ENABLED(CONFIG_MPTCP)
[SKB_EXT_MPTCP] = SKB_EXT_CHUNKSIZEOF(struct mptcp_ext),
#endif
#if IS_ENABLED(CONFIG_KCOV)
[SKB_EXT_KCOV_HANDLE] = SKB_EXT_CHUNKSIZEOF(u64),
#endif
};
static __always_inline unsigned int skb_ext_total_length(void)
{
return SKB_EXT_CHUNKSIZEOF(struct skb_ext) +
#if IS_ENABLED(CONFIG_BRIDGE_NETFILTER)
skb_ext_type_len[SKB_EXT_BRIDGE_NF] +
#endif
#ifdef CONFIG_XFRM
skb_ext_type_len[SKB_EXT_SEC_PATH] +
#endif
#if IS_ENABLED(CONFIG_NET_TC_SKB_EXT)
skb_ext_type_len[TC_SKB_EXT] +
#endif
#if IS_ENABLED(CONFIG_MPTCP)
skb_ext_type_len[SKB_EXT_MPTCP] +
#endif
#if IS_ENABLED(CONFIG_KCOV)
skb_ext_type_len[SKB_EXT_KCOV_HANDLE] +
#endif
0;
}
static void skb_extensions_init(void)
{
BUILD_BUG_ON(SKB_EXT_NUM >= 8);
BUILD_BUG_ON(skb_ext_total_length() > 255);
skbuff_ext_cache = kmem_cache_create("skbuff_ext_cache",
SKB_EXT_ALIGN_VALUE * skb_ext_total_length(),
0,
SLAB_HWCACHE_ALIGN|SLAB_PANIC,
NULL);
}
#else
static void skb_extensions_init(void) {}
#endif
void __init skb_init(void)
{
skbuff_head_cache = kmem_cache_create_usercopy("skbuff_head_cache",
sizeof(struct sk_buff),
0,
SLAB_HWCACHE_ALIGN|SLAB_PANIC,
offsetof(struct sk_buff, cb),
sizeof_field(struct sk_buff, cb),
NULL);
skbuff_fclone_cache = kmem_cache_create("skbuff_fclone_cache",
sizeof(struct sk_buff_fclones),
0,
SLAB_HWCACHE_ALIGN|SLAB_PANIC,
NULL);
skb_extensions_init();
}
static int
__skb_to_sgvec(struct sk_buff *skb, struct scatterlist *sg, int offset, int len,
unsigned int recursion_level)
{
int start = skb_headlen(skb);
int i, copy = start - offset;
struct sk_buff *frag_iter;
int elt = 0;
if (unlikely(recursion_level >= 24))
return -EMSGSIZE;
if (copy > 0) {
if (copy > len)
copy = len;
sg_set_buf(sg, skb->data + offset, copy);
elt++;
if ((len -= copy) == 0)
return elt;
offset += copy;
}
for (i = 0; i < skb_shinfo(skb)->nr_frags; i++) {
int end;
WARN_ON(start > offset + len);
end = start + skb_frag_size(&skb_shinfo(skb)->frags[i]);
if ((copy = end - offset) > 0) {
skb_frag_t *frag = &skb_shinfo(skb)->frags[i];
if (unlikely(elt && sg_is_last(&sg[elt - 1])))
return -EMSGSIZE;
if (copy > len)
copy = len;
sg_set_page(&sg[elt], skb_frag_page(frag), copy,
skb_frag_off(frag) + offset - start);
elt++;
if (!(len -= copy))
return elt;
offset += copy;
}
start = end;
}
skb_walk_frags(skb, frag_iter) {
int end, ret;
WARN_ON(start > offset + len);
end = start + frag_iter->len;
if ((copy = end - offset) > 0) {
if (unlikely(elt && sg_is_last(&sg[elt - 1])))
return -EMSGSIZE;
if (copy > len)
copy = len;
ret = __skb_to_sgvec(frag_iter, sg+elt, offset - start,
copy, recursion_level + 1);
if (unlikely(ret < 0))
return ret;
elt += ret;
if ((len -= copy) == 0)
return elt;
offset += copy;
}
start = end;
}
BUG_ON(len);
return elt;
}
/**
* skb_to_sgvec - Fill a scatter-gather list from a socket buffer
* @skb: Socket buffer containing the buffers to be mapped
* @sg: The scatter-gather list to map into
* @offset: The offset into the buffer's contents to start mapping
* @len: Length of buffer space to be mapped
*
* Fill the specified scatter-gather list with mappings/pointers into a
* region of the buffer space attached to a socket buffer. Returns either
* the number of scatterlist items used, or -EMSGSIZE if the contents
* could not fit.
*/
int skb_to_sgvec(struct sk_buff *skb, struct scatterlist *sg, int offset, int len)
{
int nsg = __skb_to_sgvec(skb, sg, offset, len, 0);
if (nsg <= 0)
return nsg;
sg_mark_end(&sg[nsg - 1]);
return nsg;
}
EXPORT_SYMBOL_GPL(skb_to_sgvec);
/* As compared with skb_to_sgvec, skb_to_sgvec_nomark only map skb to given
* sglist without mark the sg which contain last skb data as the end.
* So the caller can mannipulate sg list as will when padding new data after
* the first call without calling sg_unmark_end to expend sg list.
*
* Scenario to use skb_to_sgvec_nomark:
* 1. sg_init_table
* 2. skb_to_sgvec_nomark(payload1)
* 3. skb_to_sgvec_nomark(payload2)
*
* This is equivalent to:
* 1. sg_init_table
* 2. skb_to_sgvec(payload1)
* 3. sg_unmark_end
* 4. skb_to_sgvec(payload2)
*
* When mapping mutilple payload conditionally, skb_to_sgvec_nomark
* is more preferable.
*/
int skb_to_sgvec_nomark(struct sk_buff *skb, struct scatterlist *sg,
int offset, int len)
{
return __skb_to_sgvec(skb, sg, offset, len, 0);
}
EXPORT_SYMBOL_GPL(skb_to_sgvec_nomark);
/**
* skb_cow_data - Check that a socket buffer's data buffers are writable
* @skb: The socket buffer to check.
* @tailbits: Amount of trailing space to be added
* @trailer: Returned pointer to the skb where the @tailbits space begins
*
* Make sure that the data buffers attached to a socket buffer are
* writable. If they are not, private copies are made of the data buffers
* and the socket buffer is set to use these instead.
*
* If @tailbits is given, make sure that there is space to write @tailbits
* bytes of data beyond current end of socket buffer. @trailer will be
* set to point to the skb in which this space begins.
*
* The number of scatterlist elements required to completely map the
* COW'd and extended socket buffer will be returned.
*/
int skb_cow_data(struct sk_buff *skb, int tailbits, struct sk_buff **trailer)
{
int copyflag;
int elt;
struct sk_buff *skb1, **skb_p;
/* If skb is cloned or its head is paged, reallocate
* head pulling out all the pages (pages are considered not writable
* at the moment even if they are anonymous).
*/
if ((skb_cloned(skb) || skb_shinfo(skb)->nr_frags) &&
!__pskb_pull_tail(skb, __skb_pagelen(skb)))
return -ENOMEM;
/* Easy case. Most of packets will go this way. */
if (!skb_has_frag_list(skb)) {
/* A little of trouble, not enough of space for trailer.
* This should not happen, when stack is tuned to generate
* good frames. OK, on miss we reallocate and reserve even more
* space, 128 bytes is fair. */
if (skb_tailroom(skb) < tailbits &&
pskb_expand_head(skb, 0, tailbits-skb_tailroom(skb)+128, GFP_ATOMIC))
return -ENOMEM;
/* Voila! */
*trailer = skb;
return 1;
}
/* Misery. We are in troubles, going to mincer fragments... */
elt = 1;
skb_p = &skb_shinfo(skb)->frag_list;
copyflag = 0;
while ((skb1 = *skb_p) != NULL) {
int ntail = 0;
/* The fragment is partially pulled by someone,
* this can happen on input. Copy it and everything
* after it. */
if (skb_shared(skb1))
copyflag = 1;
/* If the skb is the last, worry about trailer. */
if (skb1->next == NULL && tailbits) {
if (skb_shinfo(skb1)->nr_frags ||
skb_has_frag_list(skb1) ||
skb_tailroom(skb1) < tailbits)
ntail = tailbits + 128;
}
if (copyflag ||
skb_cloned(skb1) ||
ntail ||
skb_shinfo(skb1)->nr_frags ||
skb_has_frag_list(skb1)) {
struct sk_buff *skb2;
/* Fuck, we are miserable poor guys... */
if (ntail == 0)
skb2 = skb_copy(skb1, GFP_ATOMIC);
else
skb2 = skb_copy_expand(skb1,
skb_headroom(skb1),
ntail,
GFP_ATOMIC);
if (unlikely(skb2 == NULL))
return -ENOMEM;
if (skb1->sk)
skb_set_owner_w(skb2, skb1->sk);
/* Looking around. Are we still alive?
* OK, link new skb, drop old one */
skb2->next = skb1->next;
*skb_p = skb2;
kfree_skb(skb1);
skb1 = skb2;
}
elt++;
*trailer = skb1;
skb_p = &skb1->next;
}
return elt;
}
EXPORT_SYMBOL_GPL(skb_cow_data);
static void sock_rmem_free(struct sk_buff *skb)
{
struct sock *sk = skb->sk;
atomic_sub(skb->truesize, &sk->sk_rmem_alloc);
}
static void skb_set_err_queue(struct sk_buff *skb)
{
/* pkt_type of skbs received on local sockets is never PACKET_OUTGOING.
* So, it is safe to (mis)use it to mark skbs on the error queue.
*/
skb->pkt_type = PACKET_OUTGOING;
BUILD_BUG_ON(PACKET_OUTGOING == 0);
}
/*
* Note: We dont mem charge error packets (no sk_forward_alloc changes)
*/
int sock_queue_err_skb(struct sock *sk, struct sk_buff *skb)
{
if (atomic_read(&sk->sk_rmem_alloc) + skb->truesize >=
(unsigned int)READ_ONCE(sk->sk_rcvbuf))
return -ENOMEM;
skb_orphan(skb);
skb->sk = sk;
skb->destructor = sock_rmem_free;
atomic_add(skb->truesize, &sk->sk_rmem_alloc);
skb_set_err_queue(skb);
/* before exiting rcu section, make sure dst is refcounted */
skb_dst_force(skb);
skb_queue_tail(&sk->sk_error_queue, skb);
if (!sock_flag(sk, SOCK_DEAD))
sk->sk_error_report(sk);
return 0;
}
EXPORT_SYMBOL(sock_queue_err_skb);
static bool is_icmp_err_skb(const struct sk_buff *skb)
{
return skb && (SKB_EXT_ERR(skb)->ee.ee_origin == SO_EE_ORIGIN_ICMP ||
SKB_EXT_ERR(skb)->ee.ee_origin == SO_EE_ORIGIN_ICMP6);
}
struct sk_buff *sock_dequeue_err_skb(struct sock *sk)
{
struct sk_buff_head *q = &sk->sk_error_queue;
struct sk_buff *skb, *skb_next = NULL;
bool icmp_next = false;
unsigned long flags;
spin_lock_irqsave(&q->lock, flags);
skb = __skb_dequeue(q);
if (skb && (skb_next = skb_peek(q))) {
icmp_next = is_icmp_err_skb(skb_next);
if (icmp_next)
sk->sk_err = SKB_EXT_ERR(skb_next)->ee.ee_errno;
}
spin_unlock_irqrestore(&q->lock, flags);
if (is_icmp_err_skb(skb) && !icmp_next)
sk->sk_err = 0;
if (skb_next)
sk->sk_error_report(sk);
return skb;
}
EXPORT_SYMBOL(sock_dequeue_err_skb);
/**
* skb_clone_sk - create clone of skb, and take reference to socket
* @skb: the skb to clone
*
* This function creates a clone of a buffer that holds a reference on
* sk_refcnt. Buffers created via this function are meant to be
* returned using sock_queue_err_skb, or free via kfree_skb.
*
* When passing buffers allocated with this function to sock_queue_err_skb
* it is necessary to wrap the call with sock_hold/sock_put in order to
* prevent the socket from being released prior to being enqueued on
* the sk_error_queue.
*/
struct sk_buff *skb_clone_sk(struct sk_buff *skb)
{
struct sock *sk = skb->sk;
struct sk_buff *clone;
if (!sk || !refcount_inc_not_zero(&sk->sk_refcnt))
return NULL;
clone = skb_clone(skb, GFP_ATOMIC);
if (!clone) {
sock_put(sk);
return NULL;
}
clone->sk = sk;
clone->destructor = sock_efree;
return clone;
}
EXPORT_SYMBOL(skb_clone_sk);
static void __skb_complete_tx_timestamp(struct sk_buff *skb,
struct sock *sk,
int tstype,
bool opt_stats)
{
struct sock_exterr_skb *serr;
int err;
BUILD_BUG_ON(sizeof(struct sock_exterr_skb) > sizeof(skb->cb));
serr = SKB_EXT_ERR(skb);
memset(serr, 0, sizeof(*serr));
serr->ee.ee_errno = ENOMSG;
serr->ee.ee_origin = SO_EE_ORIGIN_TIMESTAMPING;
serr->ee.ee_info = tstype;
serr->opt_stats = opt_stats;
serr->header.h4.iif = skb->dev ? skb->dev->ifindex : 0;
if (sk->sk_tsflags & SOF_TIMESTAMPING_OPT_ID) {
serr->ee.ee_data = skb_shinfo(skb)->tskey;
if (sk->sk_protocol == IPPROTO_TCP &&
sk->sk_type == SOCK_STREAM)
serr->ee.ee_data -= sk->sk_tskey;
}
err = sock_queue_err_skb(sk, skb);
if (err)
kfree_skb(skb);
}
static bool skb_may_tx_timestamp(struct sock *sk, bool tsonly)
{
bool ret;
if (likely(sysctl_tstamp_allow_data || tsonly))
return true;
read_lock_bh(&sk->sk_callback_lock);
ret = sk->sk_socket && sk->sk_socket->file &&
file_ns_capable(sk->sk_socket->file, &init_user_ns, CAP_NET_RAW);
read_unlock_bh(&sk->sk_callback_lock);
return ret;
}
void skb_complete_tx_timestamp(struct sk_buff *skb,
struct skb_shared_hwtstamps *hwtstamps)
{
struct sock *sk = skb->sk;
if (!skb_may_tx_timestamp(sk, false))
goto err;
/* Take a reference to prevent skb_orphan() from freeing the socket,
* but only if the socket refcount is not zero.
*/
if (likely(refcount_inc_not_zero(&sk->sk_refcnt))) {
*skb_hwtstamps(skb) = *hwtstamps;
__skb_complete_tx_timestamp(skb, sk, SCM_TSTAMP_SND, false);
sock_put(sk);
return;
}
err:
kfree_skb(skb);
}
EXPORT_SYMBOL_GPL(skb_complete_tx_timestamp);
void __skb_tstamp_tx(struct sk_buff *orig_skb,
struct skb_shared_hwtstamps *hwtstamps,
struct sock *sk, int tstype)
{
struct sk_buff *skb;
bool tsonly, opt_stats = false;
if (!sk)
return;
if (!hwtstamps && !(sk->sk_tsflags & SOF_TIMESTAMPING_OPT_TX_SWHW) &&
skb_shinfo(orig_skb)->tx_flags & SKBTX_IN_PROGRESS)
return;
tsonly = sk->sk_tsflags & SOF_TIMESTAMPING_OPT_TSONLY;
if (!skb_may_tx_timestamp(sk, tsonly))
return;
if (tsonly) {
#ifdef CONFIG_INET
if ((sk->sk_tsflags & SOF_TIMESTAMPING_OPT_STATS) &&
sk->sk_protocol == IPPROTO_TCP &&
sk->sk_type == SOCK_STREAM) {
skb = tcp_get_timestamping_opt_stats(sk, orig_skb);
opt_stats = true;
} else
#endif
skb = alloc_skb(0, GFP_ATOMIC);
} else {
skb = skb_clone(orig_skb, GFP_ATOMIC);
}
if (!skb)
return;
if (tsonly) {
skb_shinfo(skb)->tx_flags |= skb_shinfo(orig_skb)->tx_flags &
SKBTX_ANY_TSTAMP;
skb_shinfo(skb)->tskey = skb_shinfo(orig_skb)->tskey;
}
if (hwtstamps)
*skb_hwtstamps(skb) = *hwtstamps;
else
skb->tstamp = ktime_get_real();
__skb_complete_tx_timestamp(skb, sk, tstype, opt_stats);
}
EXPORT_SYMBOL_GPL(__skb_tstamp_tx);
void skb_tstamp_tx(struct sk_buff *orig_skb,
struct skb_shared_hwtstamps *hwtstamps)
{
return __skb_tstamp_tx(orig_skb, hwtstamps, orig_skb->sk,
SCM_TSTAMP_SND);
}
EXPORT_SYMBOL_GPL(skb_tstamp_tx);
void skb_complete_wifi_ack(struct sk_buff *skb, bool acked)
{
struct sock *sk = skb->sk;
struct sock_exterr_skb *serr;
int err = 1;
skb->wifi_acked_valid = 1;
skb->wifi_acked = acked;
serr = SKB_EXT_ERR(skb);
memset(serr, 0, sizeof(*serr));
serr->ee.ee_errno = ENOMSG;
serr->ee.ee_origin = SO_EE_ORIGIN_TXSTATUS;
/* Take a reference to prevent skb_orphan() from freeing the socket,
* but only if the socket refcount is not zero.
*/
if (likely(refcount_inc_not_zero(&sk->sk_refcnt))) {
err = sock_queue_err_skb(sk, skb);
sock_put(sk);
}
if (err)
kfree_skb(skb);
}
EXPORT_SYMBOL_GPL(skb_complete_wifi_ack);
/**
* skb_partial_csum_set - set up and verify partial csum values for packet
* @skb: the skb to set
* @start: the number of bytes after skb->data to start checksumming.
* @off: the offset from start to place the checksum.
*
* For untrusted partially-checksummed packets, we need to make sure the values
* for skb->csum_start and skb->csum_offset are valid so we don't oops.
*
* This function checks and sets those values and skb->ip_summed: if this
* returns false you should drop the packet.
*/
bool skb_partial_csum_set(struct sk_buff *skb, u16 start, u16 off)
{
u32 csum_end = (u32)start + (u32)off + sizeof(__sum16);
u32 csum_start = skb_headroom(skb) + (u32)start;
if (unlikely(csum_start > U16_MAX || csum_end > skb_headlen(skb))) {
net_warn_ratelimited("bad partial csum: csum=%u/%u headroom=%u headlen=%u\n",
start, off, skb_headroom(skb), skb_headlen(skb));
return false;
}
skb->ip_summed = CHECKSUM_PARTIAL;
skb->csum_start = csum_start;
skb->csum_offset = off;
skb_set_transport_header(skb, start);
return true;
}
EXPORT_SYMBOL_GPL(skb_partial_csum_set);
static int skb_maybe_pull_tail(struct sk_buff *skb, unsigned int len,
unsigned int max)
{
if (skb_headlen(skb) >= len)
return 0;
/* If we need to pullup then pullup to the max, so we
* won't need to do it again.
*/
if (max > skb->len)
max = skb->len;
if (__pskb_pull_tail(skb, max - skb_headlen(skb)) == NULL)
return -ENOMEM;
if (skb_headlen(skb) < len)
return -EPROTO;
return 0;
}
#define MAX_TCP_HDR_LEN (15 * 4)
static __sum16 *skb_checksum_setup_ip(struct sk_buff *skb,
typeof(IPPROTO_IP) proto,
unsigned int off)
{
int err;
switch (proto) {
case IPPROTO_TCP:
err = skb_maybe_pull_tail(skb, off + sizeof(struct tcphdr),
off + MAX_TCP_HDR_LEN);
if (!err && !skb_partial_csum_set(skb, off,
offsetof(struct tcphdr,
check)))
err = -EPROTO;
return err ? ERR_PTR(err) : &tcp_hdr(skb)->check;
case IPPROTO_UDP:
err = skb_maybe_pull_tail(skb, off + sizeof(struct udphdr),
off + sizeof(struct udphdr));
if (!err && !skb_partial_csum_set(skb, off,
offsetof(struct udphdr,
check)))
err = -EPROTO;
return err ? ERR_PTR(err) : &udp_hdr(skb)->check;
}
return ERR_PTR(-EPROTO);
}
/* This value should be large enough to cover a tagged ethernet header plus
* maximally sized IP and TCP or UDP headers.
*/
#define MAX_IP_HDR_LEN 128
static int skb_checksum_setup_ipv4(struct sk_buff *skb, bool recalculate)
{
unsigned int off;
bool fragment;
__sum16 *csum;
int err;
fragment = false;
err = skb_maybe_pull_tail(skb,
sizeof(struct iphdr),
MAX_IP_HDR_LEN);
if (err < 0)
goto out;
if (ip_is_fragment(ip_hdr(skb)))
fragment = true;
off = ip_hdrlen(skb);
err = -EPROTO;
if (fragment)
goto out;
csum = skb_checksum_setup_ip(skb, ip_hdr(skb)->protocol, off);
if (IS_ERR(csum))
return PTR_ERR(csum);
if (recalculate)
*csum = ~csum_tcpudp_magic(ip_hdr(skb)->saddr,
ip_hdr(skb)->daddr,
skb->len - off,
ip_hdr(skb)->protocol, 0);
err = 0;
out:
return err;
}
/* This value should be large enough to cover a tagged ethernet header plus
* an IPv6 header, all options, and a maximal TCP or UDP header.
*/
#define MAX_IPV6_HDR_LEN 256
#define OPT_HDR(type, skb, off) \
(type *)(skb_network_header(skb) + (off))
static int skb_checksum_setup_ipv6(struct sk_buff *skb, bool recalculate)
{
int err;
u8 nexthdr;
unsigned int off;
unsigned int len;
bool fragment;
bool done;
__sum16 *csum;
fragment = false;
done = false;
off = sizeof(struct ipv6hdr);
err = skb_maybe_pull_tail(skb, off, MAX_IPV6_HDR_LEN);
if (err < 0)
goto out;
nexthdr = ipv6_hdr(skb)->nexthdr;
len = sizeof(struct ipv6hdr) + ntohs(ipv6_hdr(skb)->payload_len);
while (off <= len && !done) {
switch (nexthdr) {
case IPPROTO_DSTOPTS:
case IPPROTO_HOPOPTS:
case IPPROTO_ROUTING: {
struct ipv6_opt_hdr *hp;
err = skb_maybe_pull_tail(skb,
off +
sizeof(struct ipv6_opt_hdr),
MAX_IPV6_HDR_LEN);
if (err < 0)
goto out;
hp = OPT_HDR(struct ipv6_opt_hdr, skb, off);
nexthdr = hp->nexthdr;
off += ipv6_optlen(hp);
break;
}
case IPPROTO_AH: {
struct ip_auth_hdr *hp;
err = skb_maybe_pull_tail(skb,
off +
sizeof(struct ip_auth_hdr),
MAX_IPV6_HDR_LEN);
if (err < 0)
goto out;
hp = OPT_HDR(struct ip_auth_hdr, skb, off);
nexthdr = hp->nexthdr;
off += ipv6_authlen(hp);
break;
}
case IPPROTO_FRAGMENT: {
struct frag_hdr *hp;
err = skb_maybe_pull_tail(skb,
off +
sizeof(struct frag_hdr),
MAX_IPV6_HDR_LEN);
if (err < 0)
goto out;
hp = OPT_HDR(struct frag_hdr, skb, off);
if (hp->frag_off & htons(IP6_OFFSET | IP6_MF))
fragment = true;
nexthdr = hp->nexthdr;
off += sizeof(struct frag_hdr);
break;
}
default:
done = true;
break;
}
}
err = -EPROTO;
if (!done || fragment)
goto out;
csum = skb_checksum_setup_ip(skb, nexthdr, off);
if (IS_ERR(csum))
return PTR_ERR(csum);
if (recalculate)
*csum = ~csum_ipv6_magic(&ipv6_hdr(skb)->saddr,
&ipv6_hdr(skb)->daddr,
skb->len - off, nexthdr, 0);
err = 0;
out:
return err;
}
/**
* skb_checksum_setup - set up partial checksum offset
* @skb: the skb to set up
* @recalculate: if true the pseudo-header checksum will be recalculated
*/
int skb_checksum_setup(struct sk_buff *skb, bool recalculate)
{
int err;
switch (skb->protocol) {
case htons(ETH_P_IP):
err = skb_checksum_setup_ipv4(skb, recalculate);
break;
case htons(ETH_P_IPV6):
err = skb_checksum_setup_ipv6(skb, recalculate);
break;
default:
err = -EPROTO;
break;
}
return err;
}
EXPORT_SYMBOL(skb_checksum_setup);
/**
* skb_checksum_maybe_trim - maybe trims the given skb
* @skb: the skb to check
* @transport_len: the data length beyond the network header
*
* Checks whether the given skb has data beyond the given transport length.
* If so, returns a cloned skb trimmed to this transport length.
* Otherwise returns the provided skb. Returns NULL in error cases
* (e.g. transport_len exceeds skb length or out-of-memory).
*
* Caller needs to set the skb transport header and free any returned skb if it
* differs from the provided skb.
*/
static struct sk_buff *skb_checksum_maybe_trim(struct sk_buff *skb,
unsigned int transport_len)
{
struct sk_buff *skb_chk;
unsigned int len = skb_transport_offset(skb) + transport_len;
int ret;
if (skb->len < len)
return NULL;
else if (skb->len == len)
return skb;
skb_chk = skb_clone(skb, GFP_ATOMIC);
if (!skb_chk)
return NULL;
ret = pskb_trim_rcsum(skb_chk, len);
if (ret) {
kfree_skb(skb_chk);
return NULL;
}
return skb_chk;
}
/**
* skb_checksum_trimmed - validate checksum of an skb
* @skb: the skb to check
* @transport_len: the data length beyond the network header
* @skb_chkf: checksum function to use
*
* Applies the given checksum function skb_chkf to the provided skb.
* Returns a checked and maybe trimmed skb. Returns NULL on error.
*
* If the skb has data beyond the given transport length, then a
* trimmed & cloned skb is checked and returned.
*
* Caller needs to set the skb transport header and free any returned skb if it
* differs from the provided skb.
*/
struct sk_buff *skb_checksum_trimmed(struct sk_buff *skb,
unsigned int transport_len,
__sum16(*skb_chkf)(struct sk_buff *skb))
{
struct sk_buff *skb_chk;
unsigned int offset = skb_transport_offset(skb);
__sum16 ret;
skb_chk = skb_checksum_maybe_trim(skb, transport_len);
if (!skb_chk)
goto err;
if (!pskb_may_pull(skb_chk, offset))
goto err;
skb_pull_rcsum(skb_chk, offset);
ret = skb_chkf(skb_chk);
skb_push_rcsum(skb_chk, offset);
if (ret)
goto err;
return skb_chk;
err:
if (skb_chk && skb_chk != skb)
kfree_skb(skb_chk);
return NULL;
}
EXPORT_SYMBOL(skb_checksum_trimmed);
void __skb_warn_lro_forwarding(const struct sk_buff *skb)
{
net_warn_ratelimited("%s: received packets cannot be forwarded while LRO is enabled\n",
skb->dev->name);
}
EXPORT_SYMBOL(__skb_warn_lro_forwarding);
void kfree_skb_partial(struct sk_buff *skb, bool head_stolen)
{
if (head_stolen) {
skb_release_head_state(skb);
kmem_cache_free(skbuff_head_cache, skb);
} else {
__kfree_skb(skb);
}
}
EXPORT_SYMBOL(kfree_skb_partial);
/**
* skb_try_coalesce - try to merge skb to prior one
* @to: prior buffer
* @from: buffer to add
* @fragstolen: pointer to boolean
* @delta_truesize: how much more was allocated than was requested
*/
bool skb_try_coalesce(struct sk_buff *to, struct sk_buff *from,
bool *fragstolen, int *delta_truesize)
{
struct skb_shared_info *to_shinfo, *from_shinfo;
int i, delta, len = from->len;
*fragstolen = false;
if (skb_cloned(to))
return false;
if (len <= skb_tailroom(to)) {
if (len)
BUG_ON(skb_copy_bits(from, 0, skb_put(to, len), len));
*delta_truesize = 0;
return true;
}
to_shinfo = skb_shinfo(to);
from_shinfo = skb_shinfo(from);
if (to_shinfo->frag_list || from_shinfo->frag_list)
return false;
if (skb_zcopy(to) || skb_zcopy(from))
return false;
if (skb_headlen(from) != 0) {
struct page *page;
unsigned int offset;
if (to_shinfo->nr_frags +
from_shinfo->nr_frags >= MAX_SKB_FRAGS)
return false;
if (skb_head_is_locked(from))
return false;
delta = from->truesize - SKB_DATA_ALIGN(sizeof(struct sk_buff));
page = virt_to_head_page(from->head);
offset = from->data - (unsigned char *)page_address(page);
skb_fill_page_desc(to, to_shinfo->nr_frags,
page, offset, skb_headlen(from));
*fragstolen = true;
} else {
if (to_shinfo->nr_frags +
from_shinfo->nr_frags > MAX_SKB_FRAGS)
return false;
delta = from->truesize - SKB_TRUESIZE(skb_end_offset(from));
}
WARN_ON_ONCE(delta < len);
memcpy(to_shinfo->frags + to_shinfo->nr_frags,
from_shinfo->frags,
from_shinfo->nr_frags * sizeof(skb_frag_t));
to_shinfo->nr_frags += from_shinfo->nr_frags;
if (!skb_cloned(from))
from_shinfo->nr_frags = 0;
/* if the skb is not cloned this does nothing
* since we set nr_frags to 0.
*/
for (i = 0; i < from_shinfo->nr_frags; i++)
__skb_frag_ref(&from_shinfo->frags[i]);
to->truesize += delta;
to->len += len;
to->data_len += len;
*delta_truesize = delta;
return true;
}
EXPORT_SYMBOL(skb_try_coalesce);
/**
* skb_scrub_packet - scrub an skb
*
* @skb: buffer to clean
* @xnet: packet is crossing netns
*
* skb_scrub_packet can be used after encapsulating or decapsulting a packet
* into/from a tunnel. Some information have to be cleared during these
* operations.
* skb_scrub_packet can also be used to clean a skb before injecting it in
* another namespace (@xnet == true). We have to clear all information in the
* skb that could impact namespace isolation.
*/
void skb_scrub_packet(struct sk_buff *skb, bool xnet)
{
skb->pkt_type = PACKET_HOST;
skb->skb_iif = 0;
skb->ignore_df = 0;
skb_dst_drop(skb);
skb_ext_reset(skb);
nf_reset_ct(skb);
nf_reset_trace(skb);
#ifdef CONFIG_NET_SWITCHDEV
skb->offload_fwd_mark = 0;
skb->offload_l3_fwd_mark = 0;
#endif
if (!xnet)
return;
ipvs_reset(skb);
skb->mark = 0;
skb->tstamp = 0;
}
EXPORT_SYMBOL_GPL(skb_scrub_packet);
/**
* skb_gso_transport_seglen - Return length of individual segments of a gso packet
*
* @skb: GSO skb
*
* skb_gso_transport_seglen is used to determine the real size of the
* individual segments, including Layer4 headers (TCP/UDP).
*
* The MAC/L2 or network (IP, IPv6) headers are not accounted for.
*/
static unsigned int skb_gso_transport_seglen(const struct sk_buff *skb)
{
const struct skb_shared_info *shinfo = skb_shinfo(skb);
unsigned int thlen = 0;
if (skb->encapsulation) {
thlen = skb_inner_transport_header(skb) -
skb_transport_header(skb);
if (likely(shinfo->gso_type & (SKB_GSO_TCPV4 | SKB_GSO_TCPV6)))
thlen += inner_tcp_hdrlen(skb);
} else if (likely(shinfo->gso_type & (SKB_GSO_TCPV4 | SKB_GSO_TCPV6))) {
thlen = tcp_hdrlen(skb);
} else if (unlikely(skb_is_gso_sctp(skb))) {
thlen = sizeof(struct sctphdr);
} else if (shinfo->gso_type & SKB_GSO_UDP_L4) {
thlen = sizeof(struct udphdr);
}
/* UFO sets gso_size to the size of the fragmentation
* payload, i.e. the size of the L4 (UDP) header is already
* accounted for.
*/
return thlen + shinfo->gso_size;
}
/**
* 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 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);
}
/**
* skb_gso_mac_seglen - Return length of individual segments of a gso packet
*
* @skb: GSO skb
*
* skb_gso_mac_seglen is used to determine the real size of the
* individual segments, including MAC/L2, Layer3 (IP, IPv6) and L4
* headers (TCP/UDP).
*/
static unsigned int skb_gso_mac_seglen(const struct sk_buff *skb)
{
unsigned int hdr_len = skb_transport_header(skb) - skb_mac_header(skb);
return hdr_len + skb_gso_transport_seglen(skb);
}
/**
* skb_gso_size_check - check the skb size, considering GSO_BY_FRAGS
*
* There are a couple of instances where we have a GSO skb, and we
* want to determine what size it would be after it is segmented.
*
* We might want to check:
* - L3+L4+payload size (e.g. IP forwarding)
* - L2+L3+L4+payload size (e.g. sanity check before passing to driver)
*
* This is a helper to do that correctly considering GSO_BY_FRAGS.
*
* @skb: GSO skb
*
* @seg_len: The segmented length (from skb_gso_*_seglen). In the
* GSO_BY_FRAGS case this will be [header sizes + GSO_BY_FRAGS].
*
* @max_len: The maximum permissible length.
*
* Returns true if the segmented length <= max length.
*/
static inline bool skb_gso_size_check(const struct sk_buff *skb,
unsigned int seg_len,
unsigned int max_len) {
const struct skb_shared_info *shinfo = skb_shinfo(skb);
const struct sk_buff *iter;
if (shinfo->gso_size != GSO_BY_FRAGS)
return seg_len <= max_len;
/* Undo this so we can re-use header sizes */
seg_len -= GSO_BY_FRAGS;
skb_walk_frags(skb, iter) {
if (seg_len + skb_headlen(iter) > max_len)
return false;
}
return true;
}
/**
* skb_gso_validate_network_len - Will a split GSO skb fit into a given MTU?
*
* @skb: GSO skb
* @mtu: MTU to validate against
*
* skb_gso_validate_network_len validates if a given skb will fit a
* wanted MTU once split. It considers L3 headers, L4 headers, and the
* payload.
*/
bool skb_gso_validate_network_len(const struct sk_buff *skb, unsigned int mtu)
{
return skb_gso_size_check(skb, skb_gso_network_seglen(skb), mtu);
}
EXPORT_SYMBOL_GPL(skb_gso_validate_network_len);
/**
* skb_gso_validate_mac_len - Will a split GSO skb fit in a given length?
*
* @skb: GSO skb
* @len: length to validate against
*
* skb_gso_validate_mac_len validates if a given skb will fit a wanted
* length once split, including L2, L3 and L4 headers and the payload.
*/
bool skb_gso_validate_mac_len(const struct sk_buff *skb, unsigned int len)
{
return skb_gso_size_check(skb, skb_gso_mac_seglen(skb), len);
}
EXPORT_SYMBOL_GPL(skb_gso_validate_mac_len);
static struct sk_buff *skb_reorder_vlan_header(struct sk_buff *skb)
{
int mac_len, meta_len;
void *meta;
if (skb_cow(skb, skb_headroom(skb)) < 0) {
kfree_skb(skb);
return NULL;
}
mac_len = skb->data - skb_mac_header(skb);
if (likely(mac_len > VLAN_HLEN + ETH_TLEN)) {
memmove(skb_mac_header(skb) + VLAN_HLEN, skb_mac_header(skb),
mac_len - VLAN_HLEN - ETH_TLEN);
}
meta_len = skb_metadata_len(skb);
if (meta_len) {
meta = skb_metadata_end(skb) - meta_len;
memmove(meta + VLAN_HLEN, meta, meta_len);
}
skb->mac_header += VLAN_HLEN;
return skb;
}
struct sk_buff *skb_vlan_untag(struct sk_buff *skb)
{
struct vlan_hdr *vhdr;
u16 vlan_tci;
if (unlikely(skb_vlan_tag_present(skb))) {
/* vlan_tci is already set-up so leave this for another time */
return skb;
}
skb = skb_share_check(skb, GFP_ATOMIC);
if (unlikely(!skb))
goto err_free;
/* We may access the two bytes after vlan_hdr in vlan_set_encap_proto(). */
if (unlikely(!pskb_may_pull(skb, VLAN_HLEN + sizeof(unsigned short))))
goto err_free;
vhdr = (struct vlan_hdr *)skb->data;
vlan_tci = ntohs(vhdr->h_vlan_TCI);
__vlan_hwaccel_put_tag(skb, skb->protocol, vlan_tci);
skb_pull_rcsum(skb, VLAN_HLEN);
vlan_set_encap_proto(skb, vhdr);
skb = skb_reorder_vlan_header(skb);
if (unlikely(!skb))
goto err_free;
skb_reset_network_header(skb);
skb_reset_transport_header(skb);
skb_reset_mac_len(skb);
return skb;
err_free:
kfree_skb(skb);
return NULL;
}
EXPORT_SYMBOL(skb_vlan_untag);
int skb_ensure_writable(struct sk_buff *skb, int write_len)
{
if (!pskb_may_pull(skb, write_len))
return -ENOMEM;
if (!skb_cloned(skb) || skb_clone_writable(skb, write_len))
return 0;
return pskb_expand_head(skb, 0, 0, GFP_ATOMIC);
}
EXPORT_SYMBOL(skb_ensure_writable);
/* remove VLAN header from packet and update csum accordingly.
* expects a non skb_vlan_tag_present skb with a vlan tag payload
*/
int __skb_vlan_pop(struct sk_buff *skb, u16 *vlan_tci)
{
struct vlan_hdr *vhdr;
int offset = skb->data - skb_mac_header(skb);
int err;
if (WARN_ONCE(offset,
"__skb_vlan_pop got skb with skb->data not at mac header (offset %d)\n",
offset)) {
return -EINVAL;
}
err = skb_ensure_writable(skb, VLAN_ETH_HLEN);
if (unlikely(err))
return err;
skb_postpull_rcsum(skb, skb->data + (2 * ETH_ALEN), VLAN_HLEN);
vhdr = (struct vlan_hdr *)(skb->data + ETH_HLEN);
*vlan_tci = ntohs(vhdr->h_vlan_TCI);
memmove(skb->data + VLAN_HLEN, skb->data, 2 * ETH_ALEN);
__skb_pull(skb, VLAN_HLEN);
vlan_set_encap_proto(skb, vhdr);
skb->mac_header += VLAN_HLEN;
if (skb_network_offset(skb) < ETH_HLEN)
skb_set_network_header(skb, ETH_HLEN);
skb_reset_mac_len(skb);
return err;
}
EXPORT_SYMBOL(__skb_vlan_pop);
/* Pop a vlan tag either from hwaccel or from payload.
* Expects skb->data at mac header.
*/
int skb_vlan_pop(struct sk_buff *skb)
{
u16 vlan_tci;
__be16 vlan_proto;
int err;
if (likely(skb_vlan_tag_present(skb))) {
__vlan_hwaccel_clear_tag(skb);
} else {
if (unlikely(!eth_type_vlan(skb->protocol)))
return 0;
err = __skb_vlan_pop(skb, &vlan_tci);
if (err)
return err;
}
/* move next vlan tag to hw accel tag */
if (likely(!eth_type_vlan(skb->protocol)))
return 0;
vlan_proto = skb->protocol;
err = __skb_vlan_pop(skb, &vlan_tci);
if (unlikely(err))
return err;
__vlan_hwaccel_put_tag(skb, vlan_proto, vlan_tci);
return 0;
}
EXPORT_SYMBOL(skb_vlan_pop);
/* Push a vlan tag either into hwaccel or into payload (if hwaccel tag present).
* Expects skb->data at mac header.
*/
int skb_vlan_push(struct sk_buff *skb, __be16 vlan_proto, u16 vlan_tci)
{
if (skb_vlan_tag_present(skb)) {
int offset = skb->data - skb_mac_header(skb);
int err;
if (WARN_ONCE(offset,
"skb_vlan_push got skb with skb->data not at mac header (offset %d)\n",
offset)) {
return -EINVAL;
}
err = __vlan_insert_tag(skb, skb->vlan_proto,
skb_vlan_tag_get(skb));
if (err)
return err;
skb->protocol = skb->vlan_proto;
skb->mac_len += VLAN_HLEN;
skb_postpush_rcsum(skb, skb->data + (2 * ETH_ALEN), VLAN_HLEN);
}
__vlan_hwaccel_put_tag(skb, vlan_proto, vlan_tci);
return 0;
}
EXPORT_SYMBOL(skb_vlan_push);
/**
* skb_eth_pop() - Drop the Ethernet header at the head of a packet
*
* @skb: Socket buffer to modify
*
* Drop the Ethernet header of @skb.
*
* Expects that skb->data points to the mac header and that no VLAN tags are
* present.
*
* Returns 0 on success, -errno otherwise.
*/
int skb_eth_pop(struct sk_buff *skb)
{
if (!pskb_may_pull(skb, ETH_HLEN) || skb_vlan_tagged(skb) ||
skb_network_offset(skb) < ETH_HLEN)
return -EPROTO;
skb_pull_rcsum(skb, ETH_HLEN);
skb_reset_mac_header(skb);
skb_reset_mac_len(skb);
return 0;
}
EXPORT_SYMBOL(skb_eth_pop);
/**
* skb_eth_push() - Add a new Ethernet header at the head of a packet
*
* @skb: Socket buffer to modify
* @dst: Destination MAC address of the new header
* @src: Source MAC address of the new header
*
* Prepend @skb with a new Ethernet header.
*
* Expects that skb->data points to the mac header, which must be empty.
*
* Returns 0 on success, -errno otherwise.
*/
int skb_eth_push(struct sk_buff *skb, const unsigned char *dst,
const unsigned char *src)
{
struct ethhdr *eth;
int err;
if (skb_network_offset(skb) || skb_vlan_tag_present(skb))
return -EPROTO;
err = skb_cow_head(skb, sizeof(*eth));
if (err < 0)
return err;
skb_push(skb, sizeof(*eth));
skb_reset_mac_header(skb);
skb_reset_mac_len(skb);
eth = eth_hdr(skb);
ether_addr_copy(eth->h_dest, dst);
ether_addr_copy(eth->h_source, src);
eth->h_proto = skb->protocol;
skb_postpush_rcsum(skb, eth, sizeof(*eth));
return 0;
}
EXPORT_SYMBOL(skb_eth_push);
/* Update the ethertype of hdr and the skb csum value if required. */
static void skb_mod_eth_type(struct sk_buff *skb, struct ethhdr *hdr,
__be16 ethertype)
{
if (skb->ip_summed == CHECKSUM_COMPLETE) {
__be16 diff[] = { ~hdr->h_proto, ethertype };
skb->csum = csum_partial((char *)diff, sizeof(diff), skb->csum);
}
hdr->h_proto = ethertype;
}
/**
* skb_mpls_push() - push a new MPLS header after mac_len bytes from start of
* the packet
*
* @skb: buffer
* @mpls_lse: MPLS label stack entry to push
* @mpls_proto: ethertype of the new MPLS header (expects 0x8847 or 0x8848)
* @mac_len: length of the MAC header
* @ethernet: flag to indicate if the resulting packet after skb_mpls_push is
* ethernet
*
* Expects skb->data at mac header.
*
* Returns 0 on success, -errno otherwise.
*/
int skb_mpls_push(struct sk_buff *skb, __be32 mpls_lse, __be16 mpls_proto,
int mac_len, bool ethernet)
{
struct mpls_shim_hdr *lse;
int err;
if (unlikely(!eth_p_mpls(mpls_proto)))
return -EINVAL;
/* Networking stack does not allow simultaneous Tunnel and MPLS GSO. */
if (skb->encapsulation)
return -EINVAL;
err = skb_cow_head(skb, MPLS_HLEN);
if (unlikely(err))
return err;
if (!skb->inner_protocol) {
skb_set_inner_network_header(skb, skb_network_offset(skb));
skb_set_inner_protocol(skb, skb->protocol);
}
skb_push(skb, MPLS_HLEN);
memmove(skb_mac_header(skb) - MPLS_HLEN, skb_mac_header(skb),
mac_len);
skb_reset_mac_header(skb);
skb_set_network_header(skb, mac_len);
skb_reset_mac_len(skb);
lse = mpls_hdr(skb);
lse->label_stack_entry = mpls_lse;
skb_postpush_rcsum(skb, lse, MPLS_HLEN);
if (ethernet && mac_len >= ETH_HLEN)
skb_mod_eth_type(skb, eth_hdr(skb), mpls_proto);
skb->protocol = mpls_proto;
return 0;
}
EXPORT_SYMBOL_GPL(skb_mpls_push);
/**
* skb_mpls_pop() - pop the outermost MPLS header
*
* @skb: buffer
* @next_proto: ethertype of header after popped MPLS header
* @mac_len: length of the MAC header
* @ethernet: flag to indicate if the packet is ethernet
*
* Expects skb->data at mac header.
*
* Returns 0 on success, -errno otherwise.
*/
int skb_mpls_pop(struct sk_buff *skb, __be16 next_proto, int mac_len,
bool ethernet)
{
int err;
if (unlikely(!eth_p_mpls(skb->protocol)))
return 0;
err = skb_ensure_writable(skb, mac_len + MPLS_HLEN);
if (unlikely(err))
return err;
skb_postpull_rcsum(skb, mpls_hdr(skb), MPLS_HLEN);
memmove(skb_mac_header(skb) + MPLS_HLEN, skb_mac_header(skb),
mac_len);
__skb_pull(skb, MPLS_HLEN);
skb_reset_mac_header(skb);
skb_set_network_header(skb, mac_len);
if (ethernet && mac_len >= ETH_HLEN) {
struct ethhdr *hdr;
/* use mpls_hdr() to get ethertype to account for VLANs. */
hdr = (struct ethhdr *)((void *)mpls_hdr(skb) - ETH_HLEN);
skb_mod_eth_type(skb, hdr, next_proto);
}
skb->protocol = next_proto;
return 0;
}
EXPORT_SYMBOL_GPL(skb_mpls_pop);
/**
* skb_mpls_update_lse() - modify outermost MPLS header and update csum
*
* @skb: buffer
* @mpls_lse: new MPLS label stack entry to update to
*
* Expects skb->data at mac header.
*
* Returns 0 on success, -errno otherwise.
*/
int skb_mpls_update_lse(struct sk_buff *skb, __be32 mpls_lse)
{
int err;
if (unlikely(!eth_p_mpls(skb->protocol)))
return -EINVAL;
err = skb_ensure_writable(skb, skb->mac_len + MPLS_HLEN);
if (unlikely(err))
return err;
if (skb->ip_summed == CHECKSUM_COMPLETE) {
__be32 diff[] = { ~mpls_hdr(skb)->label_stack_entry, mpls_lse };
skb->csum = csum_partial((char *)diff, sizeof(diff), skb->csum);
}
mpls_hdr(skb)->label_stack_entry = mpls_lse;
return 0;
}
EXPORT_SYMBOL_GPL(skb_mpls_update_lse);
/**
* skb_mpls_dec_ttl() - decrement the TTL of the outermost MPLS header
*
* @skb: buffer
*
* Expects skb->data at mac header.
*
* Returns 0 on success, -errno otherwise.
*/
int skb_mpls_dec_ttl(struct sk_buff *skb)
{
u32 lse;
u8 ttl;
if (unlikely(!eth_p_mpls(skb->protocol)))
return -EINVAL;
if (!pskb_may_pull(skb, skb_network_offset(skb) + MPLS_HLEN))
return -ENOMEM;
lse = be32_to_cpu(mpls_hdr(skb)->label_stack_entry);
ttl = (lse & MPLS_LS_TTL_MASK) >> MPLS_LS_TTL_SHIFT;
if (!--ttl)
return -EINVAL;
lse &= ~MPLS_LS_TTL_MASK;
lse |= ttl << MPLS_LS_TTL_SHIFT;
return skb_mpls_update_lse(skb, cpu_to_be32(lse));
}
EXPORT_SYMBOL_GPL(skb_mpls_dec_ttl);
/**
* alloc_skb_with_frags - allocate skb with page frags
*
* @header_len: size of linear part
* @data_len: needed length in frags
* @max_page_order: max page order desired.
* @errcode: pointer to error code if any
* @gfp_mask: allocation mask
*
* This can be used to allocate a paged skb, given a maximal order for frags.
*/
struct sk_buff *alloc_skb_with_frags(unsigned long header_len,
unsigned long data_len,
int max_page_order,
int *errcode,
gfp_t gfp_mask)
{
int npages = (data_len + (PAGE_SIZE - 1)) >> PAGE_SHIFT;
unsigned long chunk;
struct sk_buff *skb;
struct page *page;
int i;
*errcode = -EMSGSIZE;
/* Note this test could be relaxed, if we succeed to allocate
* high order pages...
*/
if (npages > MAX_SKB_FRAGS)
return NULL;
*errcode = -ENOBUFS;
skb = alloc_skb(header_len, gfp_mask);
if (!skb)
return NULL;
skb->truesize += npages << PAGE_SHIFT;
for (i = 0; npages > 0; i++) {
int order = max_page_order;
while (order) {
if (npages >= 1 << order) {
page = alloc_pages((gfp_mask & ~__GFP_DIRECT_RECLAIM) |
__GFP_COMP |
__GFP_NOWARN,
order);
if (page)
goto fill_page;
/* Do not retry other high order allocations */
order = 1;
max_page_order = 0;
}
order--;
}
page = alloc_page(gfp_mask);
if (!page)
goto failure;
fill_page:
chunk = min_t(unsigned long, data_len,
PAGE_SIZE << order);
skb_fill_page_desc(skb, i, page, 0, chunk);
data_len -= chunk;
npages -= 1 << order;
}
return skb;
failure:
kfree_skb(skb);
return NULL;
}
EXPORT_SYMBOL(alloc_skb_with_frags);
/* carve out the first off bytes from skb when off < headlen */
static int pskb_carve_inside_header(struct sk_buff *skb, const u32 off,
const int headlen, gfp_t gfp_mask)
{
int i;
int size = skb_end_offset(skb);
int new_hlen = headlen - off;
u8 *data;
size = SKB_DATA_ALIGN(size);
if (skb_pfmemalloc(skb))
gfp_mask |= __GFP_MEMALLOC;
data = kmalloc_reserve(size +
SKB_DATA_ALIGN(sizeof(struct skb_shared_info)),
gfp_mask, NUMA_NO_NODE, NULL);
if (!data)
return -ENOMEM;
size = SKB_WITH_OVERHEAD(ksize(data));
/* Copy real data, and all frags */
skb_copy_from_linear_data_offset(skb, off, data, new_hlen);
skb->len -= off;
memcpy((struct skb_shared_info *)(data + size),
skb_shinfo(skb),
offsetof(struct skb_shared_info,
frags[skb_shinfo(skb)->nr_frags]));
if (skb_cloned(skb)) {
/* drop the old head gracefully */
if (skb_orphan_frags(skb, gfp_mask)) {
kfree(data);
return -ENOMEM;
}
for (i = 0; i < skb_shinfo(skb)->nr_frags; i++)
skb_frag_ref(skb, i);
if (skb_has_frag_list(skb))
skb_clone_fraglist(skb);
skb_release_data(skb);
} else {
/* we can reuse existing recount- all we did was
* relocate values
*/
skb_free_head(skb);
}
skb->head = data;
skb->data = data;
skb->head_frag = 0;
#ifdef NET_SKBUFF_DATA_USES_OFFSET
skb->end = size;
#else
skb->end = skb->head + size;
#endif
skb_set_tail_pointer(skb, skb_headlen(skb));
skb_headers_offset_update(skb, 0);
skb->cloned = 0;
skb->hdr_len = 0;
skb->nohdr = 0;
atomic_set(&skb_shinfo(skb)->dataref, 1);
return 0;
}
static int pskb_carve(struct sk_buff *skb, const u32 off, gfp_t gfp);
/* carve out the first eat bytes from skb's frag_list. May recurse into
* pskb_carve()
*/
static int pskb_carve_frag_list(struct sk_buff *skb,
struct skb_shared_info *shinfo, int eat,
gfp_t gfp_mask)
{
struct sk_buff *list = shinfo->frag_list;
struct sk_buff *clone = NULL;
struct sk_buff *insp = NULL;
do {
if (!list) {
pr_err("Not enough bytes to eat. Want %d\n", eat);
return -EFAULT;
}
if (list->len <= eat) {
/* Eaten as whole. */
eat -= list->len;
list = list->next;
insp = list;
} else {
/* Eaten partially. */
if (skb_shared(list)) {
clone = skb_clone(list, gfp_mask);
if (!clone)
return -ENOMEM;
insp = list->next;
list = clone;
} else {
/* This may be pulled without problems. */
insp = list;
}
if (pskb_carve(list, eat, gfp_mask) < 0) {
kfree_skb(clone);
return -ENOMEM;
}
break;
}
} while (eat);
/* Free pulled out fragments. */
while ((list = shinfo->frag_list) != insp) {
shinfo->frag_list = list->next;
consume_skb(list);
}
/* And insert new clone at head. */
if (clone) {
clone->next = list;
shinfo->frag_list = clone;
}
return 0;
}
/* carve off first len bytes from skb. Split line (off) is in the
* non-linear part of skb
*/
static int pskb_carve_inside_nonlinear(struct sk_buff *skb, const u32 off,
int pos, gfp_t gfp_mask)
{
int i, k = 0;
int size = skb_end_offset(skb);
u8 *data;
const int nfrags = skb_shinfo(skb)->nr_frags;
struct skb_shared_info *shinfo;
size = SKB_DATA_ALIGN(size);
if (skb_pfmemalloc(skb))
gfp_mask |= __GFP_MEMALLOC;
data = kmalloc_reserve(size +
SKB_DATA_ALIGN(sizeof(struct skb_shared_info)),
gfp_mask, NUMA_NO_NODE, NULL);
if (!data)
return -ENOMEM;
size = SKB_WITH_OVERHEAD(ksize(data));
memcpy((struct skb_shared_info *)(data + size),
skb_shinfo(skb), offsetof(struct skb_shared_info, frags[0]));
if (skb_orphan_frags(skb, gfp_mask)) {
kfree(data);
return -ENOMEM;
}
shinfo = (struct skb_shared_info *)(data + size);
for (i = 0; i < nfrags; i++) {
int fsize = skb_frag_size(&skb_shinfo(skb)->frags[i]);
if (pos + fsize > off) {
shinfo->frags[k] = skb_shinfo(skb)->frags[i];
if (pos < off) {
/* Split frag.
* We have two variants in this case:
* 1. Move all the frag to the second
* part, if it is possible. F.e.
* this approach is mandatory for TUX,
* where splitting is expensive.
* 2. Split is accurately. We make this.
*/
skb_frag_off_add(&shinfo->frags[0], off - pos);
skb_frag_size_sub(&shinfo->frags[0], off - pos);
}
skb_frag_ref(skb, i);
k++;
}
pos += fsize;
}
shinfo->nr_frags = k;
if (skb_has_frag_list(skb))
skb_clone_fraglist(skb);
/* split line is in frag list */
if (k == 0 && pskb_carve_frag_list(skb, shinfo, off - pos, gfp_mask)) {
/* skb_frag_unref() is not needed here as shinfo->nr_frags = 0. */
if (skb_has_frag_list(skb))
kfree_skb_list(skb_shinfo(skb)->frag_list);
kfree(data);
return -ENOMEM;
}
skb_release_data(skb);
skb->head = data;
skb->head_frag = 0;
skb->data = data;
#ifdef NET_SKBUFF_DATA_USES_OFFSET
skb->end = size;
#else
skb->end = skb->head + size;
#endif
skb_reset_tail_pointer(skb);
skb_headers_offset_update(skb, 0);
skb->cloned = 0;
skb->hdr_len = 0;
skb->nohdr = 0;
skb->len -= off;
skb->data_len = skb->len;
atomic_set(&skb_shinfo(skb)->dataref, 1);
return 0;
}
/* remove len bytes from the beginning of the skb */
static int pskb_carve(struct sk_buff *skb, const u32 len, gfp_t gfp)
{
int headlen = skb_headlen(skb);
if (len < headlen)
return pskb_carve_inside_header(skb, len, headlen, gfp);
else
return pskb_carve_inside_nonlinear(skb, len, headlen, gfp);
}
/* Extract to_copy bytes starting at off from skb, and return this in
* a new skb
*/
struct sk_buff *pskb_extract(struct sk_buff *skb, int off,
int to_copy, gfp_t gfp)
{
struct sk_buff *clone = skb_clone(skb, gfp);
if (!clone)
return NULL;
if (pskb_carve(clone, off, gfp) < 0 ||
pskb_trim(clone, to_copy)) {
kfree_skb(clone);
return NULL;
}
return clone;
}
EXPORT_SYMBOL(pskb_extract);
/**
* skb_condense - try to get rid of fragments/frag_list if possible
* @skb: buffer
*
* Can be used to save memory before skb is added to a busy queue.
* If packet has bytes in frags and enough tail room in skb->head,
* pull all of them, so that we can free the frags right now and adjust
* truesize.
* Notes:
* We do not reallocate skb->head thus can not fail.
* Caller must re-evaluate skb->truesize if needed.
*/
void skb_condense(struct sk_buff *skb)
{
if (skb->data_len) {
if (skb->data_len > skb->end - skb->tail ||
skb_cloned(skb))
return;
/* Nice, we can free page frag(s) right now */
__pskb_pull_tail(skb, skb->data_len);
}
/* At this point, skb->truesize might be over estimated,
* because skb had a fragment, and fragments do not tell
* their truesize.
* When we pulled its content into skb->head, fragment
* was freed, but __pskb_pull_tail() could not possibly
* adjust skb->truesize, not knowing the frag truesize.
*/
skb->truesize = SKB_TRUESIZE(skb_end_offset(skb));
}
#ifdef CONFIG_SKB_EXTENSIONS
static void *skb_ext_get_ptr(struct skb_ext *ext, enum skb_ext_id id)
{
return (void *)ext + (ext->offset[id] * SKB_EXT_ALIGN_VALUE);
}
/**
* __skb_ext_alloc - allocate a new skb extensions storage
*
* @flags: See kmalloc().
*
* Returns the newly allocated pointer. The pointer can later attached to a
* skb via __skb_ext_set().
* Note: caller must handle the skb_ext as an opaque data.
*/
struct skb_ext *__skb_ext_alloc(gfp_t flags)
{
struct skb_ext *new = kmem_cache_alloc(skbuff_ext_cache, flags);
if (new) {
memset(new->offset, 0, sizeof(new->offset));
refcount_set(&new->refcnt, 1);
}
return new;
}
static struct skb_ext *skb_ext_maybe_cow(struct skb_ext *old,
unsigned int old_active)
{
struct skb_ext *new;
if (refcount_read(&old->refcnt) == 1)
return old;
new = kmem_cache_alloc(skbuff_ext_cache, GFP_ATOMIC);
if (!new)
return NULL;
memcpy(new, old, old->chunks * SKB_EXT_ALIGN_VALUE);
refcount_set(&new->refcnt, 1);
#ifdef CONFIG_XFRM
if (old_active & (1 << SKB_EXT_SEC_PATH)) {
struct sec_path *sp = skb_ext_get_ptr(old, SKB_EXT_SEC_PATH);
unsigned int i;
for (i = 0; i < sp->len; i++)
xfrm_state_hold(sp->xvec[i]);
}
#endif
__skb_ext_put(old);
return new;
}
/**
* __skb_ext_set - attach the specified extension storage to this skb
* @skb: buffer
* @id: extension id
* @ext: extension storage previously allocated via __skb_ext_alloc()
*
* Existing extensions, if any, are cleared.
*
* Returns the pointer to the extension.
*/
void *__skb_ext_set(struct sk_buff *skb, enum skb_ext_id id,
struct skb_ext *ext)
{
unsigned int newlen, newoff = SKB_EXT_CHUNKSIZEOF(*ext);
skb_ext_put(skb);
newlen = newoff + skb_ext_type_len[id];
ext->chunks = newlen;
ext->offset[id] = newoff;
skb->extensions = ext;
skb->active_extensions = 1 << id;
return skb_ext_get_ptr(ext, id);
}
/**
* skb_ext_add - allocate space for given extension, COW if needed
* @skb: buffer
* @id: extension to allocate space for
*
* Allocates enough space for the given extension.
* If the extension is already present, a pointer to that extension
* is returned.
*
* If the skb was cloned, COW applies and the returned memory can be
* modified without changing the extension space of clones buffers.
*
* Returns pointer to the extension or NULL on allocation failure.
*/
void *skb_ext_add(struct sk_buff *skb, enum skb_ext_id id)
{
struct skb_ext *new, *old = NULL;
unsigned int newlen, newoff;
if (skb->active_extensions) {
old = skb->extensions;
new = skb_ext_maybe_cow(old, skb->active_extensions);
if (!new)
return NULL;
if (__skb_ext_exist(new, id))
goto set_active;
newoff = new->chunks;
} else {
newoff = SKB_EXT_CHUNKSIZEOF(*new);
new = __skb_ext_alloc(GFP_ATOMIC);
if (!new)
return NULL;
}
newlen = newoff + skb_ext_type_len[id];
new->chunks = newlen;
new->offset[id] = newoff;
set_active:
skb->extensions = new;
skb->active_extensions |= 1 << id;
return skb_ext_get_ptr(new, id);
}
EXPORT_SYMBOL(skb_ext_add);
#ifdef CONFIG_XFRM
static void skb_ext_put_sp(struct sec_path *sp)
{
unsigned int i;
for (i = 0; i < sp->len; i++)
xfrm_state_put(sp->xvec[i]);
}
#endif
void __skb_ext_del(struct sk_buff *skb, enum skb_ext_id id)
{
struct skb_ext *ext = skb->extensions;
skb->active_extensions &= ~(1 << id);
if (skb->active_extensions == 0) {
skb->extensions = NULL;
__skb_ext_put(ext);
#ifdef CONFIG_XFRM
} else if (id == SKB_EXT_SEC_PATH &&
refcount_read(&ext->refcnt) == 1) {
struct sec_path *sp = skb_ext_get_ptr(ext, SKB_EXT_SEC_PATH);
skb_ext_put_sp(sp);
sp->len = 0;
#endif
}
}
EXPORT_SYMBOL(__skb_ext_del);
void __skb_ext_put(struct skb_ext *ext)
{
/* If this is last clone, nothing can increment
* it after check passes. Avoids one atomic op.
*/
if (refcount_read(&ext->refcnt) == 1)
goto free_now;
if (!refcount_dec_and_test(&ext->refcnt))
return;
free_now:
#ifdef CONFIG_XFRM
if (__skb_ext_exist(ext, SKB_EXT_SEC_PATH))
skb_ext_put_sp(skb_ext_get_ptr(ext, SKB_EXT_SEC_PATH));
#endif
kmem_cache_free(skbuff_ext_cache, ext);
}
EXPORT_SYMBOL(__skb_ext_put);
#endif /* CONFIG_SKB_EXTENSIONS */