android_kernel_xiaomi_sm8350/kernel/time/timer.c
Michael Bestas 73abf253d5
Merge tag 'ASB-2024-06-05_11-5.4' of https://android.googlesource.com/kernel/common into android13-5.4-lahaina
https://source.android.com/docs/security/bulletin/2024-06-01
CVE-2024-26926

* tag 'ASB-2024-06-05_11-5.4' of https://android.googlesource.com/kernel/common:
  ANDROID: ABI fixup for abi break in struct dst_ops
  BACKPORT: net: fix __dst_negative_advice() race
  UPSTREAM: selftests: timers: Fix valid-adjtimex signed left-shift undefined behavior
  Revert "timers: Rename del_timer_sync() to timer_delete_sync()"
  Reapply "media: ttpci: fix two memleaks in budget_av_attach"
  Revert "media: rename VFL_TYPE_GRABBER to _VIDEO"
  Revert "media: media/pci: rename VFL_TYPE_GRABBER to _VIDEO"
  Revert "media: ttpci: fix two memleaks in budget_av_attach"
  Revert "net: ip_tunnel: make sure to pull inner header in ip_tunnel_rcv()"
  Revert "regmap: allow to define reg_update_bits for no bus configuration"
  Revert "regmap: Add bulk read/write callbacks into regmap_config"
  Revert "serial: max310x: fix IO data corruption in batched operations"
  Revert "geneve: make sure to pull inner header in geneve_rx()"
  Linux 5.4.274
  firmware: meson_sm: fix to avoid potential NULL pointer dereference
  ip_gre: do not report erspan version on GRE interface
  erspan: Check IFLA_GRE_ERSPAN_VER is set.
  VMCI: Fix possible memcpy() run-time warning in vmci_datagram_invoke_guest_handler()
  Bluetooth: btintel: Fixe build regression
  x86/alternative: Don't call text_poke() in lazy TLB mode
  drm/i915/gt: Reset queue_priority_hint on parking
  x86/mm/pat: fix VM_PAT handling in COW mappings
  virtio: reenable config if freezing device failed
  drm/vkms: call drm_atomic_helper_shutdown before drm_dev_put()
  tty: n_gsm: require CAP_NET_ADMIN to attach N_GSM0710 ldisc
  netfilter: nf_tables: discard table flag update with pending basechain deletion
  netfilter: nf_tables: release mutex after nft_gc_seq_end from abort path
  netfilter: nf_tables: release batch on table validation from abort path
  netfilter: nf_tables: reject new basechain after table flag update
  fbmon: prevent division by zero in fb_videomode_from_videomode()
  fbdev: viafb: fix typo in hw_bitblt_1 and hw_bitblt_2
  usb: sl811-hcd: only defined function checkdone if QUIRK2 is defined
  usb: typec: tcpci: add generic tcpci fallback compatible
  tools: iio: replace seekdir() in iio_generic_buffer
  ktest: force $buildonly = 1 for 'make_warnings_file' test type
  Input: allocate keycode for Display refresh rate toggle
  block: prevent division by zero in blk_rq_stat_sum()
  Revert "ACPI: PM: Block ASUS B1400CEAE from suspend to idle by default"
  SUNRPC: increase size of rpc_wait_queue.qlen from unsigned short to unsigned int
  drm/amd/display: Fix nanosec stat overflow
  media: sta2x11: fix irq handler cast
  isofs: handle CDs with bad root inode but good Joliet root directory
  scsi: lpfc: Fix possible memory leak in lpfc_rcv_padisc()
  sysv: don't call sb_bread() with pointers_lock held
  Input: synaptics-rmi4 - fail probing if memory allocation for "phys" fails
  Bluetooth: btintel: Fix null ptr deref in btintel_read_version
  btrfs: send: handle path ref underflow in header iterate_inode_ref()
  btrfs: export: handle invalid inode or root reference in btrfs_get_parent()
  btrfs: handle chunk tree lookup error in btrfs_relocate_sys_chunks()
  tools/power x86_energy_perf_policy: Fix file leak in get_pkg_num()
  ionic: set adminq irq affinity
  arm64: dts: rockchip: fix rk3399 hdmi ports node
  arm64: dts: rockchip: fix rk3328 hdmi ports node
  panic: Flush kernel log buffer at the end
  VMCI: Fix memcpy() run-time warning in dg_dispatch_as_host()
  wifi: ath9k: fix LNA selection in ath_ant_try_scan()
  s390/entry: align system call table on 8 bytes
  x86/mce: Make sure to grab mce_sysfs_mutex in set_bank()
  ALSA: hda/realtek: Update Panasonic CF-SZ6 quirk to support headset with microphone
  ata: sata_mv: Fix PCI device ID table declaration compilation warning
  scsi: mylex: Fix sysfs buffer lengths
  ata: sata_sx4: fix pdc20621_get_from_dimm() on 64-bit
  ASoC: ops: Fix wraparound for mask in snd_soc_get_volsw
  net: ravb: Always process TX descriptor ring
  erspan: make sure erspan_base_hdr is present in skb->head
  erspan: Add type I version 0 support.
  init: open /initrd.image with O_LARGEFILE
  initramfs: switch initramfs unpacking to struct file based APIs
  fs: add a vfs_fchmod helper
  fs: add a vfs_fchown helper
  staging: vc04_services: fix information leak in create_component()
  staging: vc04_services: changen strncpy() to strscpy_pad()
  staging: mmal-vchiq: Fix client_component for 64 bit kernel
  staging: mmal-vchiq: Allocate and free components as required
  i40e: fix vf may be used uninitialized in this function warning
  ipv6: Fix infinite recursion in fib6_dump_done().
  selftests: reuseaddr_conflict: add missing new line at the end of the output
  net: stmmac: fix rx queue priority assignment
  net/sched: act_skbmod: prevent kernel-infoleak
  bpf, sockmap: Prevent lock inversion deadlock in map delete elem
  netfilter: nf_tables: Fix potential data-race in __nft_flowtable_type_get()
  netfilter: nf_tables: flush pending destroy work before exit_net release
  mm, vmscan: prevent infinite loop for costly GFP_NOIO | __GFP_RETRY_MAYFAIL allocations
  Revert "x86/mm/ident_map: Use gbpages only where full GB page should be mapped."
  vfio/platform: Create persistent IRQ handlers
  vfio/pci: Create persistent INTx handler
  vfio: Introduce interface to flush virqfd inject workqueue
  vfio/pci: Lock external INTx masking ops
  vfio/pci: Disable auto-enable of exclusive INTx IRQ
  net/rds: fix possible cp null dereference
  netfilter: nf_tables: disallow timeout for anonymous sets
  Bluetooth: Fix TOCTOU in HCI debugfs implementation
  Bluetooth: hci_event: set the conn encrypted before conn establishes
  x86/cpufeatures: Add new word for scattered features
  r8169: fix issue caused by buggy BIOS on certain boards with RTL8168d
  dm integrity: fix out-of-range warning
  tcp: properly terminate timers for kernel sockets
  ixgbe: avoid sleeping allocation in ixgbe_ipsec_vf_add_sa()
  nfc: nci: Fix uninit-value in nci_dev_up and nci_ntf_packet
  USB: core: Fix deadlock in usb_deauthorize_interface()
  scsi: lpfc: Correct size for wqe for memset()
  x86/cpu: Enable STIBP on AMD if Automatic IBRS is enabled
  scsi: qla2xxx: Fix command flush on cable pull
  usb: udc: remove warning when queue disabled ep
  usb: dwc2: gadget: LPM flow fix
  usb: dwc2: host: Fix ISOC flow in DDMA mode
  usb: dwc2: host: Fix hibernation flow
  usb: dwc2: host: Fix remote wakeup from hibernation
  scsi: core: Fix unremoved procfs host directory regression
  ALSA: sh: aica: reorder cleanup operations to avoid UAF bugs
  usb: cdc-wdm: close race between read and workqueue
  mmc: core: Avoid negative index with array access
  mmc: core: Initialize mmc_blk_ioc_data
  exec: Fix NOMMU linux_binprm::exec in transfer_args_to_stack()
  wifi: mac80211: check/clear fast rx for non-4addr sta VLAN changes
  mm/migrate: set swap entry values of THP tail pages properly.
  mm/memory-failure: fix an incorrect use of tail pages
  vt: fix memory overlapping when deleting chars in the buffer
  bounds: support non-power-of-two CONFIG_NR_CPUS
  powerpc: xor_vmx: Add '-mhard-float' to CFLAGS
  efivarfs: Request at most 512 bytes for variable names
  perf/core: Fix reentry problem in perf_output_read_group()
  loop: loop_set_status_from_info() check before assignment
  loop: Check for overflow while configuring loop
  loop: Factor out configuring loop from status
  loop: Refactor loop_set_status() size calculation
  loop: Factor out setting loop device size
  loop: Remove sector_t truncation checks
  loop: Call loop_config_discard() only after new config is applied
  Revert "loop: Check for overflow while configuring loop"
  btrfs: allocate btrfs_ioctl_defrag_range_args on stack
  printk: Update @console_may_schedule in console_trylock_spinning()
  xen/events: close evtchn after mapping cleanup
  x86/speculation: Support intra-function call validation
  objtool: Add support for intra-function calls
  objtool: is_fentry_call() crashes if call has no destination
  fs/aio: Check IOCB_AIO_RW before the struct aio_kiocb conversion
  vt: fix unicode buffer corruption when deleting characters
  tty: serial: fsl_lpuart: avoid idle preamble pending if CTS is enabled
  usb: port: Don't try to peer unused USB ports based on location
  usb: gadget: ncm: Fix handling of zero block length packets
  USB: usb-storage: Prevent divide-by-0 error in isd200_ata_command
  ALSA: hda/realtek - Fix headset Mic no show at resume back for Lenovo ALC897 platform
  xfrm: Avoid clang fortify warning in copy_to_user_tmpl()
  netfilter: nf_tables: reject constant set with timeout
  netfilter: nf_tables: disallow anonymous set with timeout flag
  netfilter: nf_tables: mark set as dead when unbinding anonymous set with timeout
  comedi: comedi_test: Prevent timers rescheduling during deletion
  dm snapshot: fix lockup in dm_exception_table_exit
  ahci: asm1064: asm1166: don't limit reported ports
  ahci: asm1064: correct count of reported ports
  x86/CPU/AMD: Update the Zenbleed microcode revisions
  nilfs2: prevent kernel bug at submit_bh_wbc()
  nilfs2: use a more common logging style
  nilfs2: fix failure to detect DAT corruption in btree and direct mappings
  memtest: use {READ,WRITE}_ONCE in memory scanning
  drm/vc4: hdmi: do not return negative values from .get_modes()
  drm/imx/ipuv3: do not return negative values from .get_modes()
  drm/exynos: do not return negative values from .get_modes()
  s390/zcrypt: fix reference counting on zcrypt card objects
  soc: fsl: qbman: Use raw spinlock for cgr_lock
  soc: fsl: qbman: Add CGR update function
  soc: fsl: qbman: Add helper for sanity checking cgr ops
  soc: fsl: qbman: Always disable interrupts when taking cgr_lock
  ring-buffer: Fix full_waiters_pending in poll
  ring-buffer: Fix resetting of shortest_full
  vfio/platform: Disable virqfds on cleanup
  kbuild: Move -Wenum-{compare-conditional,enum-conversion} into W=1
  speakup: Fix 8bit characters from direct synth
  slimbus: core: Remove usage of the deprecated ida_simple_xx() API
  nvmem: meson-efuse: fix function pointer type mismatch
  firmware: meson_sm: Rework driver as a proper platform driver
  ext4: fix corruption during on-line resize
  hwmon: (amc6821) add of_match table
  mmc: core: Fix switch on gp3 partition
  dm-raid: fix lockdep waring in "pers->hot_add_disk"
  Revert "Revert "md/raid5: Wait for MD_SB_CHANGE_PENDING in raid5d""
  PCI/PM: Drain runtime-idle callbacks before driver removal
  PCI: Drop pci_device_remove() test of pci_dev->driver
  btrfs: fix off-by-one chunk length calculation at contains_pending_extent()
  fuse: don't unhash root
  mmc: tmio: avoid concurrent runs of mmc_request_done()
  PM: sleep: wakeirq: fix wake irq warning in system suspend
  USB: serial: cp210x: add pid/vid for TDK NC0110013M and MM0110113M
  USB: serial: option: add MeiG Smart SLM320 product
  USB: serial: cp210x: add ID for MGP Instruments PDS100
  USB: serial: add device ID for VeriFone adapter
  USB: serial: ftdi_sio: add support for GMC Z216C Adapter IR-USB
  powerpc/fsl: Fix mfpmr build errors with newer binutils
  clk: qcom: mmcc-msm8974: fix terminating of frequency table arrays
  clk: qcom: mmcc-apq8084: fix terminating of frequency table arrays
  clk: qcom: gcc-ipq8074: fix terminating of frequency table arrays
  PM: suspend: Set mem_sleep_current during kernel command line setup
  parisc: Strip upper 32 bit of sum in csum_ipv6_magic for 64-bit builds
  parisc: Fix csum_ipv6_magic on 64-bit systems
  parisc: Fix csum_ipv6_magic on 32-bit systems
  parisc: Fix ip_fast_csum
  parisc: Do not hardcode registers in checksum functions
  mtd: rawnand: meson: fix scrambling mode value in command macro
  ubi: correct the calculation of fastmap size
  ubi: Check for too small LEB size in VTBL code
  ubifs: Set page uptodate in the correct place
  fat: fix uninitialized field in nostale filehandles
  ext4: correct best extent lstart adjustment logic
  selftests/mqueue: Set timeout to 180 seconds
  crypto: qat - resolve race condition during AER recovery
  crypto: qat - fix double free during reset
  sparc: vDSO: fix return value of __setup handler
  sparc64: NMI watchdog: fix return value of __setup handler
  KVM: Always flush async #PF workqueue when vCPU is being destroyed
  media: xc4000: Fix atomicity violation in xc4000_get_frequency
  serial: max310x: fix NULL pointer dereference in I2C instantiation
  arm: dts: marvell: Fix maxium->maxim typo in brownstone dts
  ARM: dts: mmp2-brownstone: Don't redeclare phandle references
  smack: Handle SMACK64TRANSMUTE in smack_inode_setsecurity()
  smack: Set SMACK64TRANSMUTE only for dirs in smack_inode_setxattr()
  clk: qcom: gcc-sdm845: Add soft dependency on rpmhpd
  media: staging: ipu3-imgu: Set fields before media_entity_pads_init()
  wifi: brcmfmac: Fix use-after-free bug in brcmf_cfg80211_detach
  timers: Rename del_timer_sync() to timer_delete_sync()
  timers: Use del_timer_sync() even on UP
  timers: Update kernel-doc for various functions
  x86/bugs: Use sysfs_emit()
  x86/cpu: Support AMD Automatic IBRS
  Documentation/hw-vuln: Update spectre doc
  amdkfd: use calloc instead of kzalloc to avoid integer overflow
  Linux 5.4.273
  regmap: Add missing map->bus check
  spi: spi-mt65xx: Fix NULL pointer access in interrupt handler
  bpf: report RCU QS in cpumap kthread
  rcu: add a helper to report consolidated flavor QS
  netfilter: nf_tables: do not compare internal table flags on updates
  ARM: dts: sun8i-h2-plus-bananapi-m2-zero: add regulator nodes vcc-dram and vcc1v2
  octeontx2-af: Use separate handlers for interrupts
  net/bnx2x: Prevent access to a freed page in page_pool
  hsr: Handle failures in module init
  rds: introduce acquire/release ordering in acquire/release_in_xmit()
  packet: annotate data-races around ignore_outgoing
  hsr: Fix uninit-value access in hsr_get_node()
  s390/vtime: fix average steal time calculation
  octeontx2-af: Use matching wake_up API variant in CGX command interface
  usb: gadget: net2272: Use irqflags in the call to net2272_probe_fin
  staging: greybus: fix get_channel_from_mode() failure path
  serial: 8250_exar: Don't remove GPIO device on suspend
  rtc: mt6397: select IRQ_DOMAIN instead of depending on it
  kconfig: fix infinite loop when expanding a macro at the end of file
  tty: serial: samsung: fix tx_empty() to return TIOCSER_TEMT
  serial: max310x: fix syntax error in IRQ error message
  tty: vt: fix 20 vs 0x20 typo in EScsiignore
  afs: Revert "afs: Hide silly-rename files from userspace"
  NFS: Fix an off by one in root_nfs_cat()
  watchdog: stm32_iwdg: initialize default timeout
  net: sunrpc: Fix an off by one in rpc_sockaddr2uaddr()
  scsi: bfa: Fix function pointer type mismatch for hcb_qe->cbfn
  RDMA/device: Fix a race between mad_client and cm_client init
  scsi: csiostor: Avoid function pointer casts
  ALSA: usb-audio: Stop parsing channels bits when all channels are found.
  clk: Fix clk_core_get NULL dereference
  sparc32: Fix section mismatch in leon_pci_grpci
  backlight: lp8788: Fully initialize backlight_properties during probe
  backlight: lm3639: Fully initialize backlight_properties during probe
  backlight: da9052: Fully initialize backlight_properties during probe
  backlight: lm3630a: Don't set bl->props.brightness in get_brightness
  backlight: lm3630a: Initialize backlight_properties on init
  powerpc/embedded6xx: Fix no previous prototype for avr_uart_send() etc.
  drm/msm/dpu: add division of drm_display_mode's hskew parameter
  powerpc/hv-gpci: Fix the H_GET_PERF_COUNTER_INFO hcall return value checks
  drm/mediatek: Fix a null pointer crash in mtk_drm_crtc_finish_page_flip
  media: ttpci: fix two memleaks in budget_av_attach
  media: media/pci: rename VFL_TYPE_GRABBER to _VIDEO
  media: rename VFL_TYPE_GRABBER to _VIDEO
  media: v4l2-core: correctly validate video and metadata ioctls
  media: go7007: fix a memleak in go7007_load_encoder
  media: dvb-frontends: avoid stack overflow warnings with clang
  media: pvrusb2: fix uaf in pvr2_context_set_notify
  drm/amdgpu: Fix missing break in ATOM_ARG_IMM Case of atom_get_src_int()
  ASoC: meson: axg-tdm-interface: fix mclk setup without mclk-fs
  mtd: rawnand: lpc32xx_mlc: fix irq handler prototype
  mtd: maps: physmap-core: fix flash size larger than 32-bit
  crypto: arm/sha - fix function cast warnings
  mfd: altera-sysmgr: Call of_node_put() only when of_parse_phandle() takes a ref
  mfd: syscon: Call of_node_put() only when of_parse_phandle() takes a ref
  drm/tegra: put drm_gem_object ref on error in tegra_fb_create
  clk: hisilicon: hi3519: Release the correct number of gates in hi3519_clk_unregister()
  PCI: Mark 3ware-9650SE Root Port Extended Tags as broken
  drm/mediatek: dsi: Fix DSI RGB666 formats and definitions
  clk: qcom: dispcc-sdm845: Adjust internal GDSC wait times
  media: pvrusb2: fix pvr2_stream_callback casts
  media: pvrusb2: remove redundant NULL check
  media: go7007: add check of return value of go7007_read_addr()
  media: imx: csc/scaler: fix v4l2_ctrl_handler memory leak
  perf stat: Avoid metric-only segv
  ALSA: seq: fix function cast warnings
  drm/radeon/ni: Fix wrong firmware size logging in ni_init_microcode()
  perf thread_map: Free strlist on normal path in thread_map__new_by_tid_str()
  PCI: switchtec: Fix an error handling path in switchtec_pci_probe()
  quota: Fix rcu annotations of inode dquot pointers
  quota: Fix potential NULL pointer dereference
  quota: simplify drop_dquot_ref()
  clk: qcom: reset: Ensure write completion on reset de/assertion
  clk: qcom: reset: Commonize the de/assert functions
  clk: qcom: reset: support resetting multiple bits
  clk: qcom: reset: Allow specifying custom reset delay
  media: edia: dvbdev: fix a use-after-free
  media: v4l2-mem2mem: fix a memleak in v4l2_m2m_register_entity
  media: v4l2-tpg: fix some memleaks in tpg_alloc
  media: em28xx: annotate unchecked call to media_device_register()
  perf evsel: Fix duplicate initialization of data->id in evsel__parse_sample()
  drm/amd/display: Fix potential NULL pointer dereferences in 'dcn10_set_output_transfer_func()'
  perf record: Fix possible incorrect free in record__switch_output()
  PCI/DPC: Print all TLP Prefixes, not just the first
  media: tc358743: register v4l2 async device only after successful setup
  dmaengine: tegra210-adma: Update dependency to ARCH_TEGRA
  drm/rockchip: lvds: do not overwrite error code
  drm: Don't treat 0 as -1 in drm_fixp2int_ceil
  drm/rockchip: inno_hdmi: Fix video timing
  drm/tegra: output: Fix missing i2c_put_adapter() in the error handling paths of tegra_output_probe()
  drm/tegra: dsi: Fix missing pm_runtime_disable() in the error handling path of tegra_dsi_probe()
  drm/tegra: dsi: Fix some error handling paths in tegra_dsi_probe()
  drm/tegra: dsi: Make use of the helper function dev_err_probe()
  gpu: host1x: mipi: Update tegra_mipi_request() to be node based
  drm/tegra: dsi: Add missing check for of_find_device_by_node
  dm: call the resume method on internal suspend
  dm raid: fix false positive for requeue needed during reshape
  nfp: flower: handle acti_netdevs allocation failure
  net/x25: fix incorrect parameter validation in the x25_getsockopt() function
  net: kcm: fix incorrect parameter validation in the kcm_getsockopt) function
  udp: fix incorrect parameter validation in the udp_lib_getsockopt() function
  l2tp: fix incorrect parameter validation in the pppol2tp_getsockopt() function
  tcp: fix incorrect parameter validation in the do_tcp_getsockopt() function
  net: hns3: fix port duplex configure error in IMP reset
  net: ip_tunnel: make sure to pull inner header in ip_tunnel_rcv()
  ipv6: fib6_rules: flush route cache when rule is changed
  bpf: Fix stackmap overflow check on 32-bit arches
  bpf: Fix hashtab overflow check on 32-bit arches
  sr9800: Add check for usbnet_get_endpoints
  Bluetooth: hci_core: Fix possible buffer overflow
  Bluetooth: Remove superfluous call to hci_conn_check_pending()
  igb: Fix missing time sync events
  igb: move PEROUT and EXTTS isr logic to separate functions
  mmc: wmt-sdmmc: remove an incorrect release_mem_region() call in the .remove function
  SUNRPC: fix some memleaks in gssx_dec_option_array
  x86, relocs: Ignore relocations in .notes section
  ACPI: scan: Fix device check notification handling
  ARM: dts: imx6dl-yapp4: Move the internal switch PHYs under the switch node
  ARM: dts: imx6dl-yapp4: Fix typo in the QCA switch register address
  ARM: dts: imx6dl-yapp4: Move phy reset into switch node
  ARM: dts: arm: realview: Fix development chip ROM compatible value
  net: ena: Remove ena_select_queue
  net: ena: cosmetic: fix line break issues
  wifi: brcmsmac: avoid function pointer casts
  iommu/amd: Mark interrupt as managed
  bus: tegra-aconnect: Update dependency to ARCH_TEGRA
  ACPI: processor_idle: Fix memory leak in acpi_processor_power_exit()
  arm64: dts: qcom: msm8996: Pad addresses
  arm64: dts: qcom: msm8996: Move regulator consumers to db820c
  arm64: dts: qcom: msm8996: Use node references in db820c
  arm64: dts: qcom: db820c: Move non-soc entries out of /soc
  bpf: Mark bpf_spin_{lock,unlock}() helpers with notrace correctly
  bpf: Factor out bpf_spin_lock into helpers.
  bpf: Add typecast to bpf helpers to help BTF generation
  arm64: dts: mediatek: mt7622: add missing "device_type" to memory nodes
  wifi: libertas: fix some memleaks in lbs_allocate_cmd_buffer()
  net: blackhole_dev: fix build warning for ethh set but not used
  af_unix: Annotate data-race of gc_in_progress in wait_for_unix_gc().
  sock_diag: annotate data-races around sock_diag_handlers[family]
  wifi: mwifiex: debugfs: Drop unnecessary error check for debugfs_create_dir()
  wifi: wilc1000: fix RCU usage in connect path
  wifi: wilc1000: fix declarations ordering
  wifi: b43: Disable QoS for bcm4331
  wifi: b43: Stop correct queue in DMA worker when QoS is disabled
  b43: main: Fix use true/false for bool type
  wifi: b43: Stop/wake correct queue in PIO Tx path when QoS is disabled
  wifi: b43: Stop/wake correct queue in DMA Tx path when QoS is disabled
  b43: dma: Fix use true/false for bool type variable
  wifi: ath10k: fix NULL pointer dereference in ath10k_wmi_tlv_op_pull_mgmt_tx_compl_ev()
  timekeeping: Fix cross-timestamp interpolation for non-x86
  timekeeping: Fix cross-timestamp interpolation corner case decision
  timekeeping: Fix cross-timestamp interpolation on counter wrap
  aoe: fix the potential use-after-free problem in aoecmd_cfg_pkts
  fs/select: rework stack allocation hack for clang
  nbd: null check for nla_nest_start
  do_sys_name_to_handle(): use kzalloc() to fix kernel-infoleak
  ASoC: wm8962: Fix up incorrect error message in wm8962_set_fll
  ASoC: wm8962: Enable both SPKOUTR_ENA and SPKOUTL_ENA in mono mode
  ASoC: wm8962: Enable oscillator if selecting WM8962_FLL_OSC
  Input: gpio_keys_polled - suppress deferred probe error for gpio
  ASoC: Intel: bytcr_rt5640: Add an extra entry for the Chuwi Vi8 tablet
  firewire: core: use long bus reset on gap count error
  Bluetooth: rfcomm: Fix null-ptr-deref in rfcomm_check_security
  scsi: mpt3sas: Prevent sending diag_reset when the controller is ready
  btrfs: fix data race at btrfs_use_block_rsv() when accessing block reserve
  dm-verity, dm-crypt: align "struct bvec_iter" correctly
  block: sed-opal: handle empty atoms when parsing response
  parisc/ftrace: add missing CONFIG_DYNAMIC_FTRACE check
  net/iucv: fix the allocation size of iucv_path_table array
  RDMA/mlx5: Relax DEVX access upon modify commands
  HID: multitouch: Add required quirk for Synaptics 0xcddc device
  MIPS: Clear Cause.BD in instruction_pointer_set
  x86/xen: Add some null pointer checking to smp.c
  ASoC: rt5645: Make LattePanda board DMI match more precise
  selftests: tls: use exact comparison in recv_partial
  io_uring: drop any code related to SCM_RIGHTS
  io_uring/unix: drop usage of io_uring socket
  UPSTREAM: arm64: dts: qcom: sdm845: fix USB DP/DM HS PHY interrupts
  UPSTREAM: arm64: dts: qcom: add PDC interrupt controller for SDM845
  Linux 5.4.272
  arm64: dts: qcom: sdm845: fix USB DP/DM HS PHY interrupts
  arm64: dts: qcom: add PDC interrupt controller for SDM845
  serial: max310x: fix IO data corruption in batched operations
  serial: max310x: implement I2C support
  serial: max310x: make accessing revision id interface-agnostic
  regmap: Add bulk read/write callbacks into regmap_config
  regmap: allow to define reg_update_bits for no bus configuration
  serial: max310x: Unprepare and disable clock in error path
  getrusage: use sig->stats_lock rather than lock_task_sighand()
  getrusage: use __for_each_thread()
  getrusage: move thread_group_cputime_adjusted() outside of lock_task_sighand()
  getrusage: add the "signal_struct *sig" local variable
  y2038: rusage: use __kernel_old_timeval
  hv_netvsc: Register VF in netvsc_probe if NET_DEVICE_REGISTER missed
  hv_netvsc: use netif_is_bond_master() instead of open code
  hv_netvsc: Make netvsc/VF binding check both MAC and serial number
  Input: i8042 - fix strange behavior of touchpad on Clevo NS70PU
  serial: max310x: prevent infinite while() loop in port startup
  serial: max310x: use a separate regmap for each port
  serial: max310x: use regmap methods for SPI batch operations
  serial: max310x: Make use of device properties
  serial: max310x: fail probe if clock crystal is unstable
  serial: max310x: Try to get crystal clock rate from property
  serial: max310x: Use devm_clk_get_optional() to get the input clock
  um: allow not setting extra rpaths in the linux binary
  selftests: mm: fix map_hugetlb failure on 64K page size systems
  netrom: Fix data-races around sysctl_net_busy_read
  netrom: Fix a data-race around sysctl_netrom_link_fails_count
  netrom: Fix a data-race around sysctl_netrom_routing_control
  netrom: Fix a data-race around sysctl_netrom_transport_no_activity_timeout
  netrom: Fix a data-race around sysctl_netrom_transport_requested_window_size
  netrom: Fix a data-race around sysctl_netrom_transport_busy_delay
  netrom: Fix a data-race around sysctl_netrom_transport_acknowledge_delay
  netrom: Fix a data-race around sysctl_netrom_transport_maximum_tries
  netrom: Fix a data-race around sysctl_netrom_transport_timeout
  netrom: Fix data-races around sysctl_netrom_network_ttl_initialiser
  netrom: Fix a data-race around sysctl_netrom_obsolescence_count_initialiser
  netrom: Fix a data-race around sysctl_netrom_default_path_quality
  netfilter: nf_conntrack_h323: Add protection for bmp length out of range
  netfilter: nft_ct: fix l3num expectations with inet pseudo family
  net/rds: fix WARNING in rds_conn_connect_if_down
  net/ipv6: avoid possible UAF in ip6_route_mpath_notify()
  net: ice: Fix potential NULL pointer dereference in ice_bridge_setlink()
  geneve: make sure to pull inner header in geneve_rx()
  ixgbe: {dis, en}able irqs in ixgbe_txrx_ring_{dis, en}able
  net: lan78xx: fix runtime PM count underflow on link stop
  lan78xx: Fix race conditions in suspend/resume handling
  lan78xx: Fix partial packet errors on suspend/resume
  lan78xx: Add missing return code checks
  lan78xx: Fix white space and style issues
  Linux 5.4.271
  gpio: 74x164: Enable output pins after registers are reset
  fs,hugetlb: fix NULL pointer dereference in hugetlbs_fill_super
  cachefiles: fix memory leak in cachefiles_add_cache()
  x86/cpu/intel: Detect TME keyid bits before setting MTRR mask registers
  mmc: core: Fix eMMC initialization with 1-bit bus connection
  dmaengine: fsl-qdma: init irq after reg initialization
  dmaengine: fsl-qdma: fix SoC may hang on 16 byte unaligned read
  btrfs: dev-replace: properly validate device names
  wifi: nl80211: reject iftype change with mesh ID change
  gtp: fix use-after-free and null-ptr-deref in gtp_newlink()
  afs: Fix endless loop in directory parsing
  ALSA: Drop leftover snd-rtctimer stuff from Makefile
  power: supply: bq27xxx-i2c: Do not free non existing IRQ
  efi/capsule-loader: fix incorrect allocation size
  rtnetlink: fix error logic of IFLA_BRIDGE_FLAGS writing back
  netfilter: nf_tables: allow NFPROTO_INET in nft_(match/target)_validate()
  Bluetooth: Enforce validation on max value of connection interval
  Bluetooth: hci_event: Fix handling of HCI_EV_IO_CAPA_REQUEST
  Bluetooth: Avoid potential use-after-free in hci_error_reset
  net: usb: dm9601: fix wrong return value in dm9601_mdio_read
  lan78xx: enable auto speed configuration for LAN7850 if no EEPROM is detected
  ipv6: fix potential "struct net" leak in inet6_rtm_getaddr()
  tun: Fix xdp_rxq_info's queue_index when detaching
  net: ip_tunnel: prevent perpetual headroom growth
  netlink: Fix kernel-infoleak-after-free in __skb_datagram_iter
  ANDROID: GKI: update .xml file due to USB changes in 5.4.270
  Revert "bpf: Add map and need_defer parameters to .map_fd_put_ptr()"
  Revert "hrtimer: Report offline hrtimer enqueue"
  Revert "drm/mipi-dsi: Fix detach call without attach"
  Linux 5.4.270
  scripts/bpf: Fix xdp_md forward declaration typo
  fs/aio: Restrict kiocb_set_cancel_fn() to I/O submitted via libaio
  drm/syncobj: call drm_syncobj_fence_add_wait when WAIT_AVAILABLE flag is set
  drm/syncobj: make lockdep complain on WAIT_FOR_SUBMIT v3
  netfilter: nf_tables: set dormant flag on hook register failure
  tls: stop recv() if initial process_rx_list gave us non-DATA
  tls: rx: drop pointless else after goto
  tls: rx: jump to a more appropriate label
  s390: use the correct count for __iowrite64_copy()
  packet: move from strlcpy with unused retval to strscpy
  ipv6: sr: fix possible use-after-free and null-ptr-deref
  afs: Increase buffer size in afs_update_volume_status()
  ipv6: properly combine dev_base_seq and ipv6.dev_addr_genid
  ipv4: properly combine dev_base_seq and ipv4.dev_addr_genid
  nouveau: fix function cast warnings
  scsi: jazz_esp: Only build if SCSI core is builtin
  bpf, scripts: Correct GPL license name
  scripts/bpf: teach bpf_helpers_doc.py to dump BPF helper definitions
  RDMA/srpt: fix function pointer cast warnings
  RDMA/srpt: Make debug output more detailed
  RDMA/bnxt_re: Return error for SRQ resize
  IB/hfi1: Fix a memleak in init_credit_return
  usb: roles: don't get/set_role() when usb_role_switch is unregistered
  usb: gadget: ncm: Avoid dropping datagrams of properly parsed NTBs
  usb: cdns3: fix memory double free when handle zero packet
  usb: cdns3: fixed memory use after free at cdns3_gadget_ep_disable()
  ARM: ep93xx: Add terminator to gpiod_lookup_table
  l2tp: pass correct message length to ip6_append_data
  PCI/MSI: Prevent MSI hardware interrupt number truncation
  gtp: fix use-after-free and null-ptr-deref in gtp_genl_dump_pdp()
  dm-crypt: don't modify the data when using authenticated encryption
  IB/hfi1: Fix sdma.h tx->num_descs off-by-one error
  PCI: tegra: Fix OF node reference leak
  PCI: tegra: Fix reporting GPIO error value
  arm64: dts: qcom: msm8916: Fix typo in pronto remoteproc node
  drm/amdgpu: Fix type of second parameter in trans_msg() callback
  iomap: Set all uptodate bits for an Uptodate page
  dm-integrity: don't modify bio's immutable bio_vec in integrity_metadata()
  x86/alternatives: Disable KASAN in apply_alternatives()
  drm/amdgpu: Check for valid number of registers to read
  Revert "drm/sun4i: dsi: Change the start delay calculation"
  ALSA: hda/realtek - Enable micmute LED on and HP system
  selftests/bpf: Avoid running unprivileged tests with alignment requirements
  net: bridge: clear bridge's private skb space on xmit
  spi: mt7621: Fix an error message in mt7621_spi_probe()
  pinctrl: rockchip: Fix refcount leak in rockchip_pinctrl_parse_groups
  pinctrl: pinctrl-rockchip: Fix a bunch of kerneldoc misdemeanours
  tcp: add annotations around sk->sk_shutdown accesses
  tcp: return EPOLLOUT from tcp_poll only when notsent_bytes is half the limit
  tcp: factor out __tcp_close() helper
  pmdomain: renesas: r8a77980-sysc: CR7 must be always on
  s390/qeth: Fix potential loss of L3-IP@ in case of network issues
  virtio-blk: Ensure no requests in virtqueues before deleting vqs.
  firewire: core: send bus reset promptly on gap count error
  scsi: lpfc: Use unsigned type for num_sge
  hwmon: (coretemp) Enlarge per package core count limit
  nvmet-fc: abort command when there is no binding
  netfilter: conntrack: check SCTP_CID_SHUTDOWN_ACK for vtag setting in sctp_new
  ASoC: sunxi: sun4i-spdif: Add support for Allwinner H616
  nvmet-tcp: fix nvme tcp ida memory leak
  regulator: pwm-regulator: Add validity checks in continuous .get_voltage
  ext4: avoid allocating blocks from corrupted group in ext4_mb_find_by_goal()
  ext4: avoid allocating blocks from corrupted group in ext4_mb_try_best_found()
  ahci: add 43-bit DMA address quirk for ASMedia ASM1061 controllers
  ahci: asm1166: correct count of reported ports
  fbdev: sis: Error out if pixclock equals zero
  fbdev: savage: Error out if pixclock equals zero
  wifi: mac80211: fix race condition on enabling fast-xmit
  wifi: cfg80211: fix missing interfaces when dumping
  dmaengine: fsl-qdma: increase size of 'irq_name'
  dmaengine: shdma: increase size of 'dev_id'
  scsi: target: core: Add TMF to tmr_list handling
  sched/rt: Disallow writing invalid values to sched_rt_period_us
  sched/rt: Fix sysctl_sched_rr_timeslice intial value
  userfaultfd: fix mmap_changing checking in mfill_atomic_hugetlb
  nilfs2: replace WARN_ONs for invalid DAT metadata block requests
  memcg: add refcnt for pcpu stock to avoid UAF problem in drain_all_stock()
  sched/rt: sysctl_sched_rr_timeslice show default timeslice after reset
  net/sched: Retire dsmark qdisc
  net/sched: Retire ATM qdisc
  net/sched: Retire CBQ qdisc
  KVM: arm64: vgic-its: Test for valid IRQ in MOVALL handler
  KVM: arm64: vgic-its: Test for valid IRQ in its_sync_lpi_pending_table()
  Linux 5.4.269
  of: gpio unittest kfree() wrong object
  of: unittest: fix EXPECT text for gpio hog errors
  net: bcmgenet: Fix EEE implementation
  Revert "Revert "mtd: rawnand: gpmi: Fix setting busy timeout setting""
  netfilter: nf_tables: fix pointer math issue in nft_byteorder_eval()
  lsm: new security_file_ioctl_compat() hook
  drm/msm/dsi: Enable runtime PM
  PM: runtime: Have devm_pm_runtime_enable() handle pm_runtime_dont_use_autosuspend()
  PM: runtime: add devm_pm_runtime_enable helper
  nilfs2: fix potential bug in end_buffer_async_write
  sched/membarrier: reduce the ability to hammer on sys_membarrier
  net: prevent mss overflow in skb_segment()
  netfilter: ipset: Missing gc cancellations fixed
  netfilter: ipset: fix performance regression in swap operation
  KVM: arm64: vgic-its: Avoid potential UAF in LPI translation cache
  mips: Fix max_mapnr being uninitialized on early stages
  arch, mm: remove stale mentions of DISCONIGMEM
  bus: moxtet: Add spi device table
  Revert "md/raid5: Wait for MD_SB_CHANGE_PENDING in raid5d"
  tracing: Inform kmemleak of saved_cmdlines allocation
  pmdomain: core: Move the unused cleanup to a _sync initcall
  can: j1939: Fix UAF in j1939_sk_match_filter during setsockopt(SO_J1939_FILTER)
  irqchip/irq-brcmstb-l2: Add write memory barrier before exit
  nfp: flower: prevent re-adding mac index for bonded port
  nfp: use correct macro for LengthSelect in BAR config
  nilfs2: fix hang in nilfs_lookup_dirty_data_buffers()
  nilfs2: fix data corruption in dsync block recovery for small block sizes
  ALSA: hda/conexant: Add quirk for SWS JS201D
  mmc: slot-gpio: Allow non-sleeping GPIO ro
  x86/mm/ident_map: Use gbpages only where full GB page should be mapped.
  x86/Kconfig: Transmeta Crusoe is CPU family 5, not 6
  serial: max310x: improve crystal stable clock detection
  serial: max310x: set default value when reading clock ready bit
  ring-buffer: Clean ring_buffer_poll_wait() error return
  iio: magnetometer: rm3100: add boundary check for the value read from RM3100_REG_TMRC
  staging: iio: ad5933: fix type mismatch regression
  tracing: Fix wasted memory in saved_cmdlines logic
  ext4: fix double-free of blocks due to wrong extents moved_len
  misc: fastrpc: Mark all sessions as invalid in cb_remove
  binder: signal epoll threads of self-work
  ALSA: hda/realtek: Enable headset mic on Vaio VJFE-ADL
  xen-netback: properly sync TX responses
  nfc: nci: free rx_data_reassembly skb on NCI device cleanup
  kbuild: Fix changing ELF file type for output of gen_btf for big endian
  firewire: core: correct documentation of fw_csr_string() kernel API
  scsi: Revert "scsi: fcoe: Fix potential deadlock on &fip->ctlr_lock"
  i2c: i801: Fix block process call transactions
  i2c: i801: Remove i801_set_block_buffer_mode
  usb: f_mass_storage: forbid async queue when shutdown happen
  USB: hub: check for alternate port before enabling A_ALT_HNP_SUPPORT
  HID: wacom: Do not register input devices until after hid_hw_start
  HID: wacom: generic: Avoid reporting a serial of '0' to userspace
  mm/writeback: fix possible divide-by-zero in wb_dirty_limits(), again
  tracing/trigger: Fix to return error if failed to alloc snapshot
  i40e: Fix waiting for queues of all VSIs to be disabled
  MIPS: Add 'memory' clobber to csum_ipv6_magic() inline assembler
  ASoC: rt5645: Fix deadlock in rt5645_jack_detect_work()
  spi: ppc4xx: Drop write-only variable
  of: unittest: Fix compile in the non-dynamic case
  of: unittest: add overlay gpio test to catch gpio hog problem
  btrfs: send: return EOPNOTSUPP on unknown flags
  btrfs: forbid deleting live subvol qgroup
  btrfs: forbid creating subvol qgroups
  netfilter: nft_set_rbtree: skip end interval element from gc
  net: stmmac: xgmac: fix a typo of register name in DPP safety handling
  net: stmmac: xgmac: use #define for string constants
  vhost: use kzalloc() instead of kmalloc() followed by memset()
  Input: atkbd - skip ATKBD_CMD_SETLEDS when skipping ATKBD_CMD_GETID
  hrtimer: Report offline hrtimer enqueue
  USB: serial: cp210x: add ID for IMST iM871A-USB
  USB: serial: option: add Fibocom FM101-GL variant
  USB: serial: qcserial: add new usb-id for Dell Wireless DW5826e
  net/af_iucv: clean up a try_then_request_module()
  netfilter: nft_ct: reject direction for ct id
  netfilter: nft_compat: restrict match/target protocol to u16
  netfilter: nft_compat: reject unused compat flag
  ppp_async: limit MRU to 64K
  tipc: Check the bearer type before calling tipc_udp_nl_bearer_add()
  rxrpc: Fix response to PING RESPONSE ACKs to a dead call
  inet: read sk->sk_family once in inet_recv_error()
  hwmon: (coretemp) Fix bogus core_id to attr name mapping
  hwmon: (coretemp) Fix out-of-bounds memory access
  hwmon: (aspeed-pwm-tacho) mutex for tach reading
  atm: idt77252: fix a memleak in open_card_ubr0
  selftests: net: avoid just another constant wait
  net: stmmac: xgmac: fix handling of DPP safety error for DMA channels
  phy: ti: phy-omap-usb2: Fix NULL pointer dereference for SRP
  dmaengine: fix is_slave_direction() return false when DMA_DEV_TO_DEV
  phy: renesas: rcar-gen3-usb2: Fix returning wrong error code
  dmaengine: fsl-qdma: Fix a memory leak related to the queue command DMA
  dmaengine: fsl-qdma: Fix a memory leak related to the status queue DMA
  bonding: remove print in bond_verify_device_path
  HID: apple: Add 2021 magic keyboard FN key mapping
  HID: apple: Swap the Fn and Left Control keys on Apple keyboards
  HID: apple: Add support for the 2021 Magic Keyboard
  net: sysfs: Fix /sys/class/net/<iface> path
  af_unix: fix lockdep positive in sk_diag_dump_icons()
  net: ipv4: fix a memleak in ip_setup_cork
  netfilter: nft_ct: sanitize layer 3 and 4 protocol number in custom expectations
  netfilter: nf_log: replace BUG_ON by WARN_ON_ONCE when putting logger
  llc: call sock_orphan() at release time
  ipv6: Ensure natural alignment of const ipv6 loopback and router addresses
  ixgbe: Fix an error handling path in ixgbe_read_iosf_sb_reg_x550()
  ixgbe: Refactor overtemp event handling
  ixgbe: Refactor returning internal error codes
  ixgbe: Remove non-inclusive language
  net: remove unneeded break
  scsi: isci: Fix an error code problem in isci_io_request_build()
  wifi: cfg80211: fix RCU dereference in __cfg80211_bss_update
  perf: Fix the nr_addr_filters fix
  drm/amdgpu: Release 'adev->pm.fw' before return in 'amdgpu_device_need_post()'
  ceph: fix deadlock or deadcode of misusing dget()
  blk-mq: fix IO hang from sbitmap wakeup race
  virtio_net: Fix "‘%d’ directive writing between 1 and 11 bytes into a region of size 10" warnings
  libsubcmd: Fix memory leak in uniq()
  PCI/AER: Decode Requester ID when no error info found
  fs/kernfs/dir: obey S_ISGID
  usb: hub: Replace hardcoded quirk value with BIT() macro
  PCI: switchtec: Fix stdev_release() crash after surprise hot remove
  PCI: Only override AMD USB controller if required
  mfd: ti_am335x_tscadc: Fix TI SoC dependencies
  i3c: master: cdns: Update maximum prescaler value for i2c clock
  um: net: Fix return type of uml_net_start_xmit()
  um: Don't use vfprintf() for os_info()
  um: Fix naming clash between UML and scheduler
  leds: trigger: panic: Don't register panic notifier if creating the trigger failed
  drm/amdgpu: Drop 'fence' check in 'to_amdgpu_amdkfd_fence()'
  drm/amdgpu: Let KFD sync with VM fences
  clk: mmp: pxa168: Fix memory leak in pxa168_clk_init()
  clk: hi3620: Fix memory leak in hi3620_mmc_clk_init()
  drm/msm/dpu: Ratelimit framedone timeout msgs
  media: ddbridge: fix an error code problem in ddb_probe
  IB/ipoib: Fix mcast list locking
  drm/exynos: Call drm_atomic_helper_shutdown() at shutdown/unbind time
  ALSA: hda: Intel: add HDA_ARL PCI ID support
  PCI: add INTEL_HDA_ARL to pci_ids.h
  media: rockchip: rga: fix swizzling for RGB formats
  media: stk1160: Fixed high volume of stk1160_dbg messages
  drm/mipi-dsi: Fix detach call without attach
  drm/framebuffer: Fix use of uninitialized variable
  drm/drm_file: fix use of uninitialized variable
  RDMA/IPoIB: Fix error code return in ipoib_mcast_join
  fast_dput(): handle underflows gracefully
  ASoC: doc: Fix undefined SND_SOC_DAPM_NOPM argument
  f2fs: fix to check return value of f2fs_reserve_new_block()
  wifi: cfg80211: free beacon_ies when overridden from hidden BSS
  wifi: rtlwifi: rtl8723{be,ae}: using calculate_bit_shift()
  wifi: rtl8xxxu: Add additional USB IDs for RTL8192EU devices
  arm64: dts: qcom: msm8998: Fix 'out-ports' is a required property
  arm64: dts: qcom: msm8996: Fix 'in-ports' is a required property
  md: Whenassemble the array, consult the superblock of the freshest device
  block: prevent an integer overflow in bvec_try_merge_hw_page
  ARM: dts: imx23/28: Fix the DMA controller node name
  ARM: dts: imx23-sansa: Use preferred i2c-gpios properties
  ARM: dts: imx27-apf27dev: Fix LED name
  ARM: dts: imx25/27: Pass timing0
  ARM: dts: imx1: Fix sram node
  ARM: dts: imx27: Fix sram node
  ARM: dts: imx: Use flash@0,0 pattern
  ARM: dts: imx25/27-eukrea: Fix RTC node name
  ARM: dts: rockchip: fix rk3036 hdmi ports node
  scsi: libfc: Fix up timeout error in fc_fcp_rec_error()
  scsi: libfc: Don't schedule abort twice
  bpf: Add map and need_defer parameters to .map_fd_put_ptr()
  wifi: ath9k: Fix potential array-index-out-of-bounds read in ath9k_htc_txstatus()
  ARM: dts: imx7s: Fix nand-controller #size-cells
  ARM: dts: imx7s: Fix lcdif compatible
  ARM: dts: imx7d: Fix coresight funnel ports
  bonding: return -ENOMEM instead of BUG in alb_upper_dev_walk
  PCI: Add no PM reset quirk for NVIDIA Spectrum devices
  scsi: lpfc: Fix possible file string name overflow when updating firmware
  selftests/bpf: Fix pyperf180 compilation failure with clang18
  selftests/bpf: satisfy compiler by having explicit return in btf test
  wifi: rt2x00: restart beacon queue when hardware reset
  ext4: avoid online resizing failures due to oversized flex bg
  ext4: remove unnecessary check from alloc_flex_gd()
  ext4: unify the type of flexbg_size to unsigned int
  ext4: fix inconsistent between segment fstrim and full fstrim
  ecryptfs: Reject casefold directory inodes
  SUNRPC: Fix a suspicious RCU usage warning
  KVM: s390: fix setting of fpc register
  s390/ptrace: handle setting of fpc register correctly
  jfs: fix array-index-out-of-bounds in diNewExt
  rxrpc_find_service_conn_rcu: fix the usage of read_seqbegin_or_lock()
  afs: fix the usage of read_seqbegin_or_lock() in afs_find_server*()
  crypto: stm32/crc32 - fix parsing list of devices
  pstore/ram: Fix crash when setting number of cpus to an odd number
  jfs: fix uaf in jfs_evict_inode
  jfs: fix array-index-out-of-bounds in dbAdjTree
  jfs: fix slab-out-of-bounds Read in dtSearch
  UBSAN: array-index-out-of-bounds in dtSplitRoot
  FS:JFS:UBSAN:array-index-out-of-bounds in dbAdjTree
  ACPI: extlog: fix NULL pointer dereference check
  PNP: ACPI: fix fortify warning
  ACPI: video: Add quirk for the Colorful X15 AT 23 Laptop
  audit: Send netlink ACK before setting connection in auditd_set
  regulator: core: Only increment use_count when enable_count changes
  perf/core: Fix narrow startup race when creating the perf nr_addr_filters sysfs file
  x86/mce: Mark fatal MCE's page as poison to avoid panic in the kdump kernel
  powerpc/lib: Validate size for vector operations
  powerpc: pmd_move_must_withdraw() is only needed for CONFIG_TRANSPARENT_HUGEPAGE
  powerpc/mm: Fix build failures due to arch_reserved_kernel_pages()
  powerpc: Fix build error due to is_valid_bugaddr()
  powerpc/mm: Fix null-pointer dereference in pgtable_cache_add
  x86/entry/ia32: Ensure s32 is sign extended to s64
  tick/sched: Preserve number of idle sleeps across CPU hotplug events
  mips: Call lose_fpu(0) before initializing fcr31 in mips_set_personality_nan
  spi: bcm-qspi: fix SFDP BFPT read by usig mspi read
  gpio: eic-sprd: Clear interrupt after set the interrupt type
  drm/exynos: gsc: minor fix for loop iteration in gsc_runtime_resume
  drm/exynos: fix accidental on-stack copy of exynos_drm_plane
  drm/bridge: nxp-ptn3460: simplify some error checking
  drm/bridge: nxp-ptn3460: fix i2c_master_send() error checking
  drm: Don't unref the same fb many times by mistake due to deadlock handling
  gpiolib: acpi: Ignore touchpad wakeup on GPD G1619-04
  netfilter: nf_tables: reject QUEUE/DROP verdict parameters
  rbd: don't move requests to the running list on errors
  btrfs: defrag: reject unknown flags of btrfs_ioctl_defrag_range_args
  btrfs: don't warn if discard range is not aligned to sector
  btrfs: tree-checker: fix inline ref size in error messages
  btrfs: ref-verify: free ref cache before clearing mount opt
  net: fec: fix the unhandled context fault from smmu
  fjes: fix memleaks in fjes_hw_setup
  netfilter: nf_tables: validate NFPROTO_* family
  netfilter: nf_tables: restrict anonymous set and map names to 16 bytes
  net/mlx5e: fix a double-free in arfs_create_groups
  net/mlx5: Use kfree(ft->g) in arfs_create_groups()
  net/mlx5: DR, Use the right GVMI number for drop action
  netlink: fix potential sleeping issue in mqueue_flush_file
  tcp: Add memory barrier to tcp_push()
  afs: Hide silly-rename files from userspace
  tracing: Ensure visibility when inserting an element into tracing_map
  net/rds: Fix UBSAN: array-index-out-of-bounds in rds_cmsg_recv
  llc: Drop support for ETH_P_TR_802_2.
  llc: make llc_ui_sendmsg() more robust against bonding changes
  vlan: skip nested type that is not IFLA_VLAN_QOS_MAPPING
  net/smc: fix illegal rmb_desc access in SMC-D connection dump
  x86/CPU/AMD: Fix disabling XSAVES on AMD family 0x17 due to erratum
  powerpc: Use always instead of always-y in for crtsavres.o
  fs: move S_ISGID stripping into the vfs_*() helpers
  fs: add mode_strip_sgid() helper
  mtd: spinand: macronix: Fix MX35LFxGE4AD page size
  block: Remove special-casing of compound pages
  rename(): fix the locking of subdirectories
  ubifs: ubifs_symlink: Fix memleak of inode->i_link in error path
  nouveau/vmm: don't set addr on the fail path to avoid warning
  mmc: core: Use mrq.sbc in close-ended ffu
  arm64: dts: qcom: sdm845: fix USB wakeup interrupt types
  parisc/firmware: Fix F-extend for PDC addresses
  rpmsg: virtio: Free driver_override when rpmsg_remove()
  hwrng: core - Fix page fault dead lock on mmap-ed hwrng
  PM: hibernate: Enforce ordering during image compression/decompression
  crypto: api - Disallow identical driver names
  ext4: allow for the last group to be marked as trimmed
  serial: sc16is7xx: add check for unsupported SPI modes during probe
  spi: introduce SPI_MODE_X_MASK macro
  serial: sc16is7xx: set safe default SPI clock frequency
  units: add the HZ macros
  units: change from 'L' to 'UL'
  units: Add Watt units
  include/linux/units.h: add helpers for kelvin to/from Celsius conversion
  PCI: mediatek: Clear interrupt status before dispatching handler

 Conflicts:
	include/linux/timer.h
	mm/memory-failure.c

Change-Id: I4974903c79ecddc3d9225b0b723a30b6c83ef572
2024-06-22 17:58:09 +03:00

2214 lines
63 KiB
C

// SPDX-License-Identifier: GPL-2.0
/*
* Kernel internal timers
*
* Copyright (C) 1991, 1992 Linus Torvalds
*
* 1997-01-28 Modified by Finn Arne Gangstad to make timers scale better.
*
* 1997-09-10 Updated NTP code according to technical memorandum Jan '96
* "A Kernel Model for Precision Timekeeping" by Dave Mills
* 1998-12-24 Fixed a xtime SMP race (we need the xtime_lock rw spinlock to
* serialize accesses to xtime/lost_ticks).
* Copyright (C) 1998 Andrea Arcangeli
* 1999-03-10 Improved NTP compatibility by Ulrich Windl
* 2002-05-31 Move sys_sysinfo here and make its locking sane, Robert Love
* 2000-10-05 Implemented scalable SMP per-CPU timer handling.
* Copyright (C) 2000, 2001, 2002 Ingo Molnar
* Designed by David S. Miller, Alexey Kuznetsov and Ingo Molnar
*/
#include <linux/kernel_stat.h>
#include <linux/export.h>
#include <linux/interrupt.h>
#include <linux/percpu.h>
#include <linux/init.h>
#include <linux/mm.h>
#include <linux/swap.h>
#include <linux/pid_namespace.h>
#include <linux/notifier.h>
#include <linux/thread_info.h>
#include <linux/time.h>
#include <linux/jiffies.h>
#include <linux/posix-timers.h>
#include <linux/cpu.h>
#include <linux/syscalls.h>
#include <linux/delay.h>
#include <linux/tick.h>
#include <linux/kallsyms.h>
#include <linux/irq_work.h>
#include <linux/sched/signal.h>
#include <linux/sched/sysctl.h>
#include <linux/sched/nohz.h>
#include <linux/sched/debug.h>
#include <linux/slab.h>
#include <linux/compat.h>
#include <linux/random.h>
#include <linux/uaccess.h>
#include <asm/unistd.h>
#include <asm/div64.h>
#include <asm/timex.h>
#include <asm/io.h>
#include "tick-internal.h"
#define CREATE_TRACE_POINTS
#include <trace/events/timer.h>
__visible u64 jiffies_64 __cacheline_aligned_in_smp = INITIAL_JIFFIES;
EXPORT_SYMBOL(jiffies_64);
/*
* The timer wheel has LVL_DEPTH array levels. Each level provides an array of
* LVL_SIZE buckets. Each level is driven by its own clock and therefor each
* level has a different granularity.
*
* The level granularity is: LVL_CLK_DIV ^ lvl
* The level clock frequency is: HZ / (LVL_CLK_DIV ^ level)
*
* The array level of a newly armed timer depends on the relative expiry
* time. The farther the expiry time is away the higher the array level and
* therefor the granularity becomes.
*
* Contrary to the original timer wheel implementation, which aims for 'exact'
* expiry of the timers, this implementation removes the need for recascading
* the timers into the lower array levels. The previous 'classic' timer wheel
* implementation of the kernel already violated the 'exact' expiry by adding
* slack to the expiry time to provide batched expiration. The granularity
* levels provide implicit batching.
*
* This is an optimization of the original timer wheel implementation for the
* majority of the timer wheel use cases: timeouts. The vast majority of
* timeout timers (networking, disk I/O ...) are canceled before expiry. If
* the timeout expires it indicates that normal operation is disturbed, so it
* does not matter much whether the timeout comes with a slight delay.
*
* The only exception to this are networking timers with a small expiry
* time. They rely on the granularity. Those fit into the first wheel level,
* which has HZ granularity.
*
* We don't have cascading anymore. timers with a expiry time above the
* capacity of the last wheel level are force expired at the maximum timeout
* value of the last wheel level. From data sampling we know that the maximum
* value observed is 5 days (network connection tracking), so this should not
* be an issue.
*
* The currently chosen array constants values are a good compromise between
* array size and granularity.
*
* This results in the following granularity and range levels:
*
* HZ 1000 steps
* Level Offset Granularity Range
* 0 0 1 ms 0 ms - 63 ms
* 1 64 8 ms 64 ms - 511 ms
* 2 128 64 ms 512 ms - 4095 ms (512ms - ~4s)
* 3 192 512 ms 4096 ms - 32767 ms (~4s - ~32s)
* 4 256 4096 ms (~4s) 32768 ms - 262143 ms (~32s - ~4m)
* 5 320 32768 ms (~32s) 262144 ms - 2097151 ms (~4m - ~34m)
* 6 384 262144 ms (~4m) 2097152 ms - 16777215 ms (~34m - ~4h)
* 7 448 2097152 ms (~34m) 16777216 ms - 134217727 ms (~4h - ~1d)
* 8 512 16777216 ms (~4h) 134217728 ms - 1073741822 ms (~1d - ~12d)
*
* HZ 300
* Level Offset Granularity Range
* 0 0 3 ms 0 ms - 210 ms
* 1 64 26 ms 213 ms - 1703 ms (213ms - ~1s)
* 2 128 213 ms 1706 ms - 13650 ms (~1s - ~13s)
* 3 192 1706 ms (~1s) 13653 ms - 109223 ms (~13s - ~1m)
* 4 256 13653 ms (~13s) 109226 ms - 873810 ms (~1m - ~14m)
* 5 320 109226 ms (~1m) 873813 ms - 6990503 ms (~14m - ~1h)
* 6 384 873813 ms (~14m) 6990506 ms - 55924050 ms (~1h - ~15h)
* 7 448 6990506 ms (~1h) 55924053 ms - 447392423 ms (~15h - ~5d)
* 8 512 55924053 ms (~15h) 447392426 ms - 3579139406 ms (~5d - ~41d)
*
* HZ 250
* Level Offset Granularity Range
* 0 0 4 ms 0 ms - 255 ms
* 1 64 32 ms 256 ms - 2047 ms (256ms - ~2s)
* 2 128 256 ms 2048 ms - 16383 ms (~2s - ~16s)
* 3 192 2048 ms (~2s) 16384 ms - 131071 ms (~16s - ~2m)
* 4 256 16384 ms (~16s) 131072 ms - 1048575 ms (~2m - ~17m)
* 5 320 131072 ms (~2m) 1048576 ms - 8388607 ms (~17m - ~2h)
* 6 384 1048576 ms (~17m) 8388608 ms - 67108863 ms (~2h - ~18h)
* 7 448 8388608 ms (~2h) 67108864 ms - 536870911 ms (~18h - ~6d)
* 8 512 67108864 ms (~18h) 536870912 ms - 4294967288 ms (~6d - ~49d)
*
* HZ 100
* Level Offset Granularity Range
* 0 0 10 ms 0 ms - 630 ms
* 1 64 80 ms 640 ms - 5110 ms (640ms - ~5s)
* 2 128 640 ms 5120 ms - 40950 ms (~5s - ~40s)
* 3 192 5120 ms (~5s) 40960 ms - 327670 ms (~40s - ~5m)
* 4 256 40960 ms (~40s) 327680 ms - 2621430 ms (~5m - ~43m)
* 5 320 327680 ms (~5m) 2621440 ms - 20971510 ms (~43m - ~5h)
* 6 384 2621440 ms (~43m) 20971520 ms - 167772150 ms (~5h - ~1d)
* 7 448 20971520 ms (~5h) 167772160 ms - 1342177270 ms (~1d - ~15d)
*/
/* Clock divisor for the next level */
#define LVL_CLK_SHIFT 3
#define LVL_CLK_DIV (1UL << LVL_CLK_SHIFT)
#define LVL_CLK_MASK (LVL_CLK_DIV - 1)
#define LVL_SHIFT(n) ((n) * LVL_CLK_SHIFT)
#define LVL_GRAN(n) (1UL << LVL_SHIFT(n))
/*
* The time start value for each level to select the bucket at enqueue
* time.
*/
#define LVL_START(n) ((LVL_SIZE - 1) << (((n) - 1) * LVL_CLK_SHIFT))
/* Size of each clock level */
#define LVL_BITS 6
#define LVL_SIZE (1UL << LVL_BITS)
#define LVL_MASK (LVL_SIZE - 1)
#define LVL_OFFS(n) ((n) * LVL_SIZE)
/* Level depth */
#if HZ > 100
# define LVL_DEPTH 9
# else
# define LVL_DEPTH 8
#endif
/* The cutoff (max. capacity of the wheel) */
#define WHEEL_TIMEOUT_CUTOFF (LVL_START(LVL_DEPTH))
#define WHEEL_TIMEOUT_MAX (WHEEL_TIMEOUT_CUTOFF - LVL_GRAN(LVL_DEPTH - 1))
/*
* The resulting wheel size. If NOHZ is configured we allocate two
* wheels so we have a separate storage for the deferrable timers.
*/
#define WHEEL_SIZE (LVL_SIZE * LVL_DEPTH)
#ifdef CONFIG_NO_HZ_COMMON
# define NR_BASES 2
# define BASE_STD 0
# define BASE_DEF 1
#else
# define NR_BASES 1
# define BASE_STD 0
# define BASE_DEF 0
#endif
struct timer_base {
raw_spinlock_t lock;
struct timer_list *running_timer;
#ifdef CONFIG_PREEMPT_RT
spinlock_t expiry_lock;
atomic_t timer_waiters;
#endif
unsigned long clk;
unsigned long next_expiry;
unsigned int cpu;
bool is_idle;
bool must_forward_clk;
DECLARE_BITMAP(pending_map, WHEEL_SIZE);
struct hlist_head vectors[WHEEL_SIZE];
} ____cacheline_aligned;
static DEFINE_PER_CPU(struct timer_base, timer_bases[NR_BASES]);
struct timer_base timer_base_deferrable;
static atomic_t deferrable_pending;
#ifdef CONFIG_NO_HZ_COMMON
static DEFINE_STATIC_KEY_FALSE(timers_nohz_active);
static DEFINE_MUTEX(timer_keys_mutex);
static void timer_update_keys(struct work_struct *work);
static DECLARE_WORK(timer_update_work, timer_update_keys);
#ifdef CONFIG_SMP
unsigned int sysctl_timer_migration = 1;
DEFINE_STATIC_KEY_FALSE(timers_migration_enabled);
static void timers_update_migration(void)
{
if (sysctl_timer_migration && tick_nohz_active)
static_branch_enable(&timers_migration_enabled);
else
static_branch_disable(&timers_migration_enabled);
}
#else
static inline void timers_update_migration(void) { }
#endif /* !CONFIG_SMP */
static void timer_update_keys(struct work_struct *work)
{
mutex_lock(&timer_keys_mutex);
timers_update_migration();
static_branch_enable(&timers_nohz_active);
mutex_unlock(&timer_keys_mutex);
}
void timers_update_nohz(void)
{
schedule_work(&timer_update_work);
}
int timer_migration_handler(struct ctl_table *table, int write,
void __user *buffer, size_t *lenp,
loff_t *ppos)
{
int ret;
mutex_lock(&timer_keys_mutex);
ret = proc_dointvec_minmax(table, write, buffer, lenp, ppos);
if (!ret && write)
timers_update_migration();
mutex_unlock(&timer_keys_mutex);
return ret;
}
static inline bool is_timers_nohz_active(void)
{
return static_branch_unlikely(&timers_nohz_active);
}
#else
static inline bool is_timers_nohz_active(void) { return false; }
#endif /* NO_HZ_COMMON */
static unsigned long round_jiffies_common(unsigned long j, int cpu,
bool force_up)
{
int rem;
unsigned long original = j;
/*
* We don't want all cpus firing their timers at once hitting the
* same lock or cachelines, so we skew each extra cpu with an extra
* 3 jiffies. This 3 jiffies came originally from the mm/ code which
* already did this.
* The skew is done by adding 3*cpunr, then round, then subtract this
* extra offset again.
*/
j += cpu * 3;
rem = j % HZ;
/*
* If the target jiffie is just after a whole second (which can happen
* due to delays of the timer irq, long irq off times etc etc) then
* we should round down to the whole second, not up. Use 1/4th second
* as cutoff for this rounding as an extreme upper bound for this.
* But never round down if @force_up is set.
*/
if (rem < HZ/4 && !force_up) /* round down */
j = j - rem;
else /* round up */
j = j - rem + HZ;
/* now that we have rounded, subtract the extra skew again */
j -= cpu * 3;
/*
* Make sure j is still in the future. Otherwise return the
* unmodified value.
*/
return time_is_after_jiffies(j) ? j : original;
}
/**
* __round_jiffies - function to round jiffies to a full second
* @j: the time in (absolute) jiffies that should be rounded
* @cpu: the processor number on which the timeout will happen
*
* __round_jiffies() rounds an absolute time in the future (in jiffies)
* up or down to (approximately) full seconds. This is useful for timers
* for which the exact time they fire does not matter too much, as long as
* they fire approximately every X seconds.
*
* By rounding these timers to whole seconds, all such timers will fire
* at the same time, rather than at various times spread out. The goal
* of this is to have the CPU wake up less, which saves power.
*
* The exact rounding is skewed for each processor to avoid all
* processors firing at the exact same time, which could lead
* to lock contention or spurious cache line bouncing.
*
* The return value is the rounded version of the @j parameter.
*/
unsigned long __round_jiffies(unsigned long j, int cpu)
{
return round_jiffies_common(j, cpu, false);
}
EXPORT_SYMBOL_GPL(__round_jiffies);
/**
* __round_jiffies_relative - function to round jiffies to a full second
* @j: the time in (relative) jiffies that should be rounded
* @cpu: the processor number on which the timeout will happen
*
* __round_jiffies_relative() rounds a time delta in the future (in jiffies)
* up or down to (approximately) full seconds. This is useful for timers
* for which the exact time they fire does not matter too much, as long as
* they fire approximately every X seconds.
*
* By rounding these timers to whole seconds, all such timers will fire
* at the same time, rather than at various times spread out. The goal
* of this is to have the CPU wake up less, which saves power.
*
* The exact rounding is skewed for each processor to avoid all
* processors firing at the exact same time, which could lead
* to lock contention or spurious cache line bouncing.
*
* The return value is the rounded version of the @j parameter.
*/
unsigned long __round_jiffies_relative(unsigned long j, int cpu)
{
unsigned long j0 = jiffies;
/* Use j0 because jiffies might change while we run */
return round_jiffies_common(j + j0, cpu, false) - j0;
}
EXPORT_SYMBOL_GPL(__round_jiffies_relative);
/**
* round_jiffies - function to round jiffies to a full second
* @j: the time in (absolute) jiffies that should be rounded
*
* round_jiffies() rounds an absolute time in the future (in jiffies)
* up or down to (approximately) full seconds. This is useful for timers
* for which the exact time they fire does not matter too much, as long as
* they fire approximately every X seconds.
*
* By rounding these timers to whole seconds, all such timers will fire
* at the same time, rather than at various times spread out. The goal
* of this is to have the CPU wake up less, which saves power.
*
* The return value is the rounded version of the @j parameter.
*/
unsigned long round_jiffies(unsigned long j)
{
return round_jiffies_common(j, raw_smp_processor_id(), false);
}
EXPORT_SYMBOL_GPL(round_jiffies);
/**
* round_jiffies_relative - function to round jiffies to a full second
* @j: the time in (relative) jiffies that should be rounded
*
* round_jiffies_relative() rounds a time delta in the future (in jiffies)
* up or down to (approximately) full seconds. This is useful for timers
* for which the exact time they fire does not matter too much, as long as
* they fire approximately every X seconds.
*
* By rounding these timers to whole seconds, all such timers will fire
* at the same time, rather than at various times spread out. The goal
* of this is to have the CPU wake up less, which saves power.
*
* The return value is the rounded version of the @j parameter.
*/
unsigned long round_jiffies_relative(unsigned long j)
{
return __round_jiffies_relative(j, raw_smp_processor_id());
}
EXPORT_SYMBOL_GPL(round_jiffies_relative);
/**
* __round_jiffies_up - function to round jiffies up to a full second
* @j: the time in (absolute) jiffies that should be rounded
* @cpu: the processor number on which the timeout will happen
*
* This is the same as __round_jiffies() except that it will never
* round down. This is useful for timeouts for which the exact time
* of firing does not matter too much, as long as they don't fire too
* early.
*/
unsigned long __round_jiffies_up(unsigned long j, int cpu)
{
return round_jiffies_common(j, cpu, true);
}
EXPORT_SYMBOL_GPL(__round_jiffies_up);
/**
* __round_jiffies_up_relative - function to round jiffies up to a full second
* @j: the time in (relative) jiffies that should be rounded
* @cpu: the processor number on which the timeout will happen
*
* This is the same as __round_jiffies_relative() except that it will never
* round down. This is useful for timeouts for which the exact time
* of firing does not matter too much, as long as they don't fire too
* early.
*/
unsigned long __round_jiffies_up_relative(unsigned long j, int cpu)
{
unsigned long j0 = jiffies;
/* Use j0 because jiffies might change while we run */
return round_jiffies_common(j + j0, cpu, true) - j0;
}
EXPORT_SYMBOL_GPL(__round_jiffies_up_relative);
/**
* round_jiffies_up - function to round jiffies up to a full second
* @j: the time in (absolute) jiffies that should be rounded
*
* This is the same as round_jiffies() except that it will never
* round down. This is useful for timeouts for which the exact time
* of firing does not matter too much, as long as they don't fire too
* early.
*/
unsigned long round_jiffies_up(unsigned long j)
{
return round_jiffies_common(j, raw_smp_processor_id(), true);
}
EXPORT_SYMBOL_GPL(round_jiffies_up);
/**
* round_jiffies_up_relative - function to round jiffies up to a full second
* @j: the time in (relative) jiffies that should be rounded
*
* This is the same as round_jiffies_relative() except that it will never
* round down. This is useful for timeouts for which the exact time
* of firing does not matter too much, as long as they don't fire too
* early.
*/
unsigned long round_jiffies_up_relative(unsigned long j)
{
return __round_jiffies_up_relative(j, raw_smp_processor_id());
}
EXPORT_SYMBOL_GPL(round_jiffies_up_relative);
static inline unsigned int timer_get_idx(struct timer_list *timer)
{
return (timer->flags & TIMER_ARRAYMASK) >> TIMER_ARRAYSHIFT;
}
static inline void timer_set_idx(struct timer_list *timer, unsigned int idx)
{
timer->flags = (timer->flags & ~TIMER_ARRAYMASK) |
idx << TIMER_ARRAYSHIFT;
}
/*
* Helper function to calculate the array index for a given expiry
* time.
*/
#ifndef CONFIG_SCHED_WALT
static inline unsigned calc_index(unsigned expires, unsigned lvl)
{
expires = (expires + LVL_GRAN(lvl)) >> LVL_SHIFT(lvl);
return LVL_OFFS(lvl) + (expires & LVL_MASK);
}
#else
static inline unsigned calc_index(unsigned expires, unsigned lvl)
{
if (lvl != 0 && (expires & ~(UINT_MAX << LVL_SHIFT(lvl))))
expires = (expires + LVL_GRAN(lvl)) >> LVL_SHIFT(lvl);
else
expires = expires >> LVL_SHIFT(lvl);
return LVL_OFFS(lvl) + (expires & LVL_MASK);
}
#endif
static int calc_wheel_index(unsigned long expires, unsigned long clk)
{
unsigned long delta = expires - clk;
unsigned int idx;
if (delta < LVL_START(1)) {
idx = calc_index(expires, 0);
} else if (delta < LVL_START(2)) {
idx = calc_index(expires, 1);
} else if (delta < LVL_START(3)) {
idx = calc_index(expires, 2);
} else if (delta < LVL_START(4)) {
idx = calc_index(expires, 3);
} else if (delta < LVL_START(5)) {
idx = calc_index(expires, 4);
} else if (delta < LVL_START(6)) {
idx = calc_index(expires, 5);
} else if (delta < LVL_START(7)) {
idx = calc_index(expires, 6);
} else if (LVL_DEPTH > 8 && delta < LVL_START(8)) {
idx = calc_index(expires, 7);
} else if ((long) delta < 0) {
idx = clk & LVL_MASK;
} else {
/*
* Force expire obscene large timeouts to expire at the
* capacity limit of the wheel.
*/
if (delta >= WHEEL_TIMEOUT_CUTOFF)
expires = clk + WHEEL_TIMEOUT_MAX;
idx = calc_index(expires, LVL_DEPTH - 1);
}
return idx;
}
/*
* Enqueue the timer into the hash bucket, mark it pending in
* the bitmap and store the index in the timer flags.
*/
static void enqueue_timer(struct timer_base *base, struct timer_list *timer,
unsigned int idx)
{
hlist_add_head(&timer->entry, base->vectors + idx);
__set_bit(idx, base->pending_map);
timer_set_idx(timer, idx);
trace_timer_start(timer, timer->expires, timer->flags);
}
static void
__internal_add_timer(struct timer_base *base, struct timer_list *timer)
{
unsigned int idx;
idx = calc_wheel_index(timer->expires, base->clk);
enqueue_timer(base, timer, idx);
}
static void
trigger_dyntick_cpu(struct timer_base *base, struct timer_list *timer)
{
if (!is_timers_nohz_active())
return;
/*
* TODO: This wants some optimizing similar to the code below, but we
* will do that when we switch from push to pull for deferrable timers.
*/
if (timer->flags & TIMER_DEFERRABLE) {
if (tick_nohz_full_cpu(base->cpu))
wake_up_nohz_cpu(base->cpu);
return;
}
/*
* We might have to IPI the remote CPU if the base is idle and the
* timer is not deferrable. If the other CPU is on the way to idle
* then it can't set base->is_idle as we hold the base lock:
*/
if (!base->is_idle)
return;
/* Check whether this is the new first expiring timer: */
if (time_after_eq(timer->expires, base->next_expiry))
return;
/*
* Set the next expiry time and kick the CPU so it can reevaluate the
* wheel:
*/
if (time_before(timer->expires, base->clk)) {
/*
* Prevent from forward_timer_base() moving the base->clk
* backward
*/
base->next_expiry = base->clk;
} else {
base->next_expiry = timer->expires;
}
wake_up_nohz_cpu(base->cpu);
}
static void
internal_add_timer(struct timer_base *base, struct timer_list *timer)
{
__internal_add_timer(base, timer);
trigger_dyntick_cpu(base, timer);
}
#ifdef CONFIG_DEBUG_OBJECTS_TIMERS
static struct debug_obj_descr timer_debug_descr;
static void *timer_debug_hint(void *addr)
{
return ((struct timer_list *) addr)->function;
}
static bool timer_is_static_object(void *addr)
{
struct timer_list *timer = addr;
return (timer->entry.pprev == NULL &&
timer->entry.next == TIMER_ENTRY_STATIC);
}
/*
* fixup_init is called when:
* - an active object is initialized
*/
static bool timer_fixup_init(void *addr, enum debug_obj_state state)
{
struct timer_list *timer = addr;
switch (state) {
case ODEBUG_STATE_ACTIVE:
del_timer_sync(timer);
debug_object_init(timer, &timer_debug_descr);
return true;
default:
return false;
}
}
/* Stub timer callback for improperly used timers. */
static void stub_timer(struct timer_list *unused)
{
WARN_ON(1);
}
/*
* fixup_activate is called when:
* - an active object is activated
* - an unknown non-static object is activated
*/
static bool timer_fixup_activate(void *addr, enum debug_obj_state state)
{
struct timer_list *timer = addr;
switch (state) {
case ODEBUG_STATE_NOTAVAILABLE:
timer_setup(timer, stub_timer, 0);
return true;
case ODEBUG_STATE_ACTIVE:
WARN_ON(1);
/* fall through */
default:
return false;
}
}
/*
* fixup_free is called when:
* - an active object is freed
*/
static bool timer_fixup_free(void *addr, enum debug_obj_state state)
{
struct timer_list *timer = addr;
switch (state) {
case ODEBUG_STATE_ACTIVE:
del_timer_sync(timer);
debug_object_free(timer, &timer_debug_descr);
return true;
default:
return false;
}
}
/*
* fixup_assert_init is called when:
* - an untracked/uninit-ed object is found
*/
static bool timer_fixup_assert_init(void *addr, enum debug_obj_state state)
{
struct timer_list *timer = addr;
switch (state) {
case ODEBUG_STATE_NOTAVAILABLE:
timer_setup(timer, stub_timer, 0);
return true;
default:
return false;
}
}
static struct debug_obj_descr timer_debug_descr = {
.name = "timer_list",
.debug_hint = timer_debug_hint,
.is_static_object = timer_is_static_object,
.fixup_init = timer_fixup_init,
.fixup_activate = timer_fixup_activate,
.fixup_free = timer_fixup_free,
.fixup_assert_init = timer_fixup_assert_init,
};
static inline void debug_timer_init(struct timer_list *timer)
{
debug_object_init(timer, &timer_debug_descr);
}
static inline void debug_timer_activate(struct timer_list *timer)
{
debug_object_activate(timer, &timer_debug_descr);
}
static inline void debug_timer_deactivate(struct timer_list *timer)
{
debug_object_deactivate(timer, &timer_debug_descr);
}
static inline void debug_timer_free(struct timer_list *timer)
{
debug_object_free(timer, &timer_debug_descr);
}
static inline void debug_timer_assert_init(struct timer_list *timer)
{
debug_object_assert_init(timer, &timer_debug_descr);
}
static void do_init_timer(struct timer_list *timer,
void (*func)(struct timer_list *),
unsigned int flags,
const char *name, struct lock_class_key *key);
void init_timer_on_stack_key(struct timer_list *timer,
void (*func)(struct timer_list *),
unsigned int flags,
const char *name, struct lock_class_key *key)
{
debug_object_init_on_stack(timer, &timer_debug_descr);
do_init_timer(timer, func, flags, name, key);
}
EXPORT_SYMBOL_GPL(init_timer_on_stack_key);
void destroy_timer_on_stack(struct timer_list *timer)
{
debug_object_free(timer, &timer_debug_descr);
}
EXPORT_SYMBOL_GPL(destroy_timer_on_stack);
#else
static inline void debug_timer_init(struct timer_list *timer) { }
static inline void debug_timer_activate(struct timer_list *timer) { }
static inline void debug_timer_deactivate(struct timer_list *timer) { }
static inline void debug_timer_assert_init(struct timer_list *timer) { }
#endif
static inline void debug_init(struct timer_list *timer)
{
debug_timer_init(timer);
trace_timer_init(timer);
}
static inline void debug_deactivate(struct timer_list *timer)
{
debug_timer_deactivate(timer);
trace_timer_cancel(timer);
}
static inline void debug_assert_init(struct timer_list *timer)
{
debug_timer_assert_init(timer);
}
static void do_init_timer(struct timer_list *timer,
void (*func)(struct timer_list *),
unsigned int flags,
const char *name, struct lock_class_key *key)
{
timer->entry.pprev = NULL;
timer->function = func;
timer->flags = flags | raw_smp_processor_id();
lockdep_init_map(&timer->lockdep_map, name, key, 0);
}
/**
* init_timer_key - initialize a timer
* @timer: the timer to be initialized
* @func: timer callback function
* @flags: timer flags
* @name: name of the timer
* @key: lockdep class key of the fake lock used for tracking timer
* sync lock dependencies
*
* init_timer_key() must be done to a timer prior calling *any* of the
* other timer functions.
*/
void init_timer_key(struct timer_list *timer,
void (*func)(struct timer_list *), unsigned int flags,
const char *name, struct lock_class_key *key)
{
debug_init(timer);
do_init_timer(timer, func, flags, name, key);
}
EXPORT_SYMBOL(init_timer_key);
static inline void detach_timer(struct timer_list *timer, bool clear_pending)
{
struct hlist_node *entry = &timer->entry;
debug_deactivate(timer);
__hlist_del(entry);
if (clear_pending)
entry->pprev = NULL;
entry->next = LIST_POISON2;
}
static int detach_if_pending(struct timer_list *timer, struct timer_base *base,
bool clear_pending)
{
unsigned idx = timer_get_idx(timer);
if (!timer_pending(timer))
return 0;
if (hlist_is_singular_node(&timer->entry, base->vectors + idx))
__clear_bit(idx, base->pending_map);
detach_timer(timer, clear_pending);
return 1;
}
static inline struct timer_base *get_timer_cpu_base(u32 tflags, u32 cpu)
{
struct timer_base *base = per_cpu_ptr(&timer_bases[BASE_STD], cpu);
/*
* If the timer is deferrable and NO_HZ_COMMON is set then we need
* to use the deferrable base.
*/
if (IS_ENABLED(CONFIG_NO_HZ_COMMON) && (tflags & TIMER_DEFERRABLE)) {
base = &timer_base_deferrable;
if (tflags & TIMER_PINNED)
base = per_cpu_ptr(&timer_bases[BASE_DEF], cpu);
}
return base;
}
static inline struct timer_base *get_timer_this_cpu_base(u32 tflags)
{
struct timer_base *base = this_cpu_ptr(&timer_bases[BASE_STD]);
/*
* If the timer is deferrable and NO_HZ_COMMON is set then we need
* to use the deferrable base.
*/
if (IS_ENABLED(CONFIG_NO_HZ_COMMON) && (tflags & TIMER_DEFERRABLE)) {
base = &timer_base_deferrable;
if (tflags & TIMER_PINNED)
base = this_cpu_ptr(&timer_bases[BASE_DEF]);
}
return base;
}
static inline struct timer_base *get_timer_base(u32 tflags)
{
return get_timer_cpu_base(tflags, tflags & TIMER_CPUMASK);
}
static inline struct timer_base *
get_target_base(struct timer_base *base, unsigned tflags)
{
#if defined(CONFIG_SMP) && defined(CONFIG_NO_HZ_COMMON)
if (static_branch_likely(&timers_migration_enabled) &&
!(tflags & TIMER_PINNED))
return get_timer_cpu_base(tflags, get_nohz_timer_target());
#endif
return get_timer_this_cpu_base(tflags);
}
static inline void forward_timer_base(struct timer_base *base)
{
#ifdef CONFIG_NO_HZ_COMMON
unsigned long jnow;
/*
* We only forward the base when we are idle or have just come out of
* idle (must_forward_clk logic), and have a delta between base clock
* and jiffies. In the common case, run_timers will take care of it.
*/
if (likely(!base->must_forward_clk))
return;
jnow = READ_ONCE(jiffies);
base->must_forward_clk = base->is_idle;
if ((long)(jnow - base->clk) < 2)
return;
/*
* If the next expiry value is > jiffies, then we fast forward to
* jiffies otherwise we forward to the next expiry value.
*/
if (time_after(base->next_expiry, jnow)) {
base->clk = jnow;
} else {
if (WARN_ON_ONCE(time_before(base->next_expiry, base->clk)))
return;
base->clk = base->next_expiry;
}
#endif
}
/*
* We are using hashed locking: Holding per_cpu(timer_bases[x]).lock means
* that all timers which are tied to this base are locked, and the base itself
* is locked too.
*
* So __run_timers/migrate_timers can safely modify all timers which could
* be found in the base->vectors array.
*
* When a timer is migrating then the TIMER_MIGRATING flag is set and we need
* to wait until the migration is done.
*/
static struct timer_base *lock_timer_base(struct timer_list *timer,
unsigned long *flags)
__acquires(timer->base->lock)
{
for (;;) {
struct timer_base *base;
u32 tf;
/*
* We need to use READ_ONCE() here, otherwise the compiler
* might re-read @tf between the check for TIMER_MIGRATING
* and spin_lock().
*/
tf = READ_ONCE(timer->flags);
if (!(tf & TIMER_MIGRATING)) {
base = get_timer_base(tf);
raw_spin_lock_irqsave(&base->lock, *flags);
if (timer->flags == tf)
return base;
raw_spin_unlock_irqrestore(&base->lock, *flags);
}
cpu_relax();
}
}
#define MOD_TIMER_PENDING_ONLY 0x01
#define MOD_TIMER_REDUCE 0x02
static inline int
__mod_timer(struct timer_list *timer, unsigned long expires, unsigned int options)
{
struct timer_base *base, *new_base;
unsigned int idx = UINT_MAX;
unsigned long clk = 0, flags;
int ret = 0;
BUG_ON(!timer->function);
/*
* This is a common optimization triggered by the networking code - if
* the timer is re-modified to have the same timeout or ends up in the
* same array bucket then just return:
*/
if (timer_pending(timer)) {
/*
* The downside of this optimization is that it can result in
* larger granularity than you would get from adding a new
* timer with this expiry.
*/
long diff = timer->expires - expires;
if (!diff)
return 1;
if (options & MOD_TIMER_REDUCE && diff <= 0)
return 1;
/*
* We lock timer base and calculate the bucket index right
* here. If the timer ends up in the same bucket, then we
* just update the expiry time and avoid the whole
* dequeue/enqueue dance.
*/
base = lock_timer_base(timer, &flags);
forward_timer_base(base);
if (timer_pending(timer) && (options & MOD_TIMER_REDUCE) &&
time_before_eq(timer->expires, expires)) {
ret = 1;
goto out_unlock;
}
clk = base->clk;
idx = calc_wheel_index(expires, clk);
/*
* Retrieve and compare the array index of the pending
* timer. If it matches set the expiry to the new value so a
* subsequent call will exit in the expires check above.
*/
if (idx == timer_get_idx(timer)) {
if (!(options & MOD_TIMER_REDUCE))
timer->expires = expires;
else if (time_after(timer->expires, expires))
timer->expires = expires;
ret = 1;
goto out_unlock;
}
} else {
base = lock_timer_base(timer, &flags);
forward_timer_base(base);
}
ret = detach_if_pending(timer, base, false);
if (!ret && (options & MOD_TIMER_PENDING_ONLY))
goto out_unlock;
new_base = get_target_base(base, timer->flags);
if (base != new_base) {
/*
* We are trying to schedule the timer on the new base.
* However we can't change timer's base while it is running,
* otherwise del_timer_sync() can't detect that the timer's
* handler yet has not finished. This also guarantees that the
* timer is serialized wrt itself.
*/
if (likely(base->running_timer != timer)) {
/* See the comment in lock_timer_base() */
timer->flags |= TIMER_MIGRATING;
raw_spin_unlock(&base->lock);
base = new_base;
raw_spin_lock(&base->lock);
WRITE_ONCE(timer->flags,
(timer->flags & ~TIMER_BASEMASK) | base->cpu);
forward_timer_base(base);
}
}
debug_timer_activate(timer);
timer->expires = expires;
/*
* If 'idx' was calculated above and the base time did not advance
* between calculating 'idx' and possibly switching the base, only
* enqueue_timer() and trigger_dyntick_cpu() is required. Otherwise
* we need to (re)calculate the wheel index via
* internal_add_timer().
*/
if (idx != UINT_MAX && clk == base->clk) {
enqueue_timer(base, timer, idx);
trigger_dyntick_cpu(base, timer);
} else {
internal_add_timer(base, timer);
}
out_unlock:
raw_spin_unlock_irqrestore(&base->lock, flags);
return ret;
}
/**
* mod_timer_pending - Modify a pending timer's timeout
* @timer: The pending timer to be modified
* @expires: New absolute timeout in jiffies
*
* mod_timer_pending() is the same for pending timers as mod_timer(), but
* will not activate inactive timers.
*
* Return:
* * %0 - The timer was inactive and not modified
* * %1 - The timer was active and requeued to expire at @expires
*/
int mod_timer_pending(struct timer_list *timer, unsigned long expires)
{
return __mod_timer(timer, expires, MOD_TIMER_PENDING_ONLY);
}
EXPORT_SYMBOL(mod_timer_pending);
/**
* mod_timer - Modify a timer's timeout
* @timer: The timer to be modified
* @expires: New absolute timeout in jiffies
*
* mod_timer(timer, expires) is equivalent to:
*
* del_timer(timer); timer->expires = expires; add_timer(timer);
*
* mod_timer() is more efficient than the above open coded sequence. In
* case that the timer is inactive, the del_timer() part is a NOP. The
* timer is in any case activated with the new expiry time @expires.
*
* Note that if there are multiple unserialized concurrent users of the
* same timer, then mod_timer() is the only safe way to modify the timeout,
* since add_timer() cannot modify an already running timer.
*
* Return:
* * %0 - The timer was inactive and started
* * %1 - The timer was active and requeued to expire at @expires or
* the timer was active and not modified because @expires did
* not change the effective expiry time
*/
int mod_timer(struct timer_list *timer, unsigned long expires)
{
return __mod_timer(timer, expires, 0);
}
EXPORT_SYMBOL(mod_timer);
/**
* timer_reduce - Modify a timer's timeout if it would reduce the timeout
* @timer: The timer to be modified
* @expires: New absolute timeout in jiffies
*
* timer_reduce() is very similar to mod_timer(), except that it will only
* modify an enqueued timer if that would reduce the expiration time. If
* @timer is not enqueued it starts the timer.
*
* Return:
* * %0 - The timer was inactive and started
* * %1 - The timer was active and requeued to expire at @expires or
* the timer was active and not modified because @expires
* did not change the effective expiry time such that the
* timer would expire earlier than already scheduled
*/
int timer_reduce(struct timer_list *timer, unsigned long expires)
{
return __mod_timer(timer, expires, MOD_TIMER_REDUCE);
}
EXPORT_SYMBOL(timer_reduce);
/**
* add_timer - Start a timer
* @timer: The timer to be started
*
* Start @timer to expire at @timer->expires in the future. @timer->expires
* is the absolute expiry time measured in 'jiffies'. When the timer expires
* timer->function(timer) will be invoked from soft interrupt context.
*
* The @timer->expires and @timer->function fields must be set prior
* to calling this function.
*
* If @timer->expires is already in the past @timer will be queued to
* expire at the next timer tick.
*
* This can only operate on an inactive timer. Attempts to invoke this on
* an active timer are rejected with a warning.
*/
void add_timer(struct timer_list *timer)
{
BUG_ON(timer_pending(timer));
mod_timer(timer, timer->expires);
}
EXPORT_SYMBOL(add_timer);
/**
* add_timer_on - Start a timer on a particular CPU
* @timer: The timer to be started
* @cpu: The CPU to start it on
*
* Same as add_timer() except that it starts the timer on the given CPU.
*
* See add_timer() for further details.
*/
void add_timer_on(struct timer_list *timer, int cpu)
{
struct timer_base *new_base, *base;
unsigned long flags;
BUG_ON(timer_pending(timer) || !timer->function);
new_base = get_timer_cpu_base(timer->flags, cpu);
/*
* If @timer was on a different CPU, it should be migrated with the
* old base locked to prevent other operations proceeding with the
* wrong base locked. See lock_timer_base().
*/
base = lock_timer_base(timer, &flags);
if (base != new_base) {
timer->flags |= TIMER_MIGRATING;
raw_spin_unlock(&base->lock);
base = new_base;
raw_spin_lock(&base->lock);
WRITE_ONCE(timer->flags,
(timer->flags & ~TIMER_BASEMASK) | cpu);
}
forward_timer_base(base);
debug_timer_activate(timer);
internal_add_timer(base, timer);
raw_spin_unlock_irqrestore(&base->lock, flags);
}
EXPORT_SYMBOL_GPL(add_timer_on);
/**
* del_timer - Deactivate a timer.
* @timer: The timer to be deactivated
*
* The function only deactivates a pending timer, but contrary to
* del_timer_sync() it does not take into account whether the timer's
* callback function is concurrently executed on a different CPU or not.
* It neither prevents rearming of the timer. If @timer can be rearmed
* concurrently then the return value of this function is meaningless.
*
* Return:
* * %0 - The timer was not pending
* * %1 - The timer was pending and deactivated
*/
int del_timer(struct timer_list *timer)
{
struct timer_base *base;
unsigned long flags;
int ret = 0;
debug_assert_init(timer);
if (timer_pending(timer)) {
base = lock_timer_base(timer, &flags);
ret = detach_if_pending(timer, base, true);
raw_spin_unlock_irqrestore(&base->lock, flags);
}
return ret;
}
EXPORT_SYMBOL(del_timer);
/**
* try_to_del_timer_sync - Try to deactivate a timer
* @timer: Timer to deactivate
*
* This function tries to deactivate a timer. On success the timer is not
* queued and the timer callback function is not running on any CPU.
*
* This function does not guarantee that the timer cannot be rearmed right
* after dropping the base lock. That needs to be prevented by the calling
* code if necessary.
*
* Return:
* * %0 - The timer was not pending
* * %1 - The timer was pending and deactivated
* * %-1 - The timer callback function is running on a different CPU
*/
int try_to_del_timer_sync(struct timer_list *timer)
{
struct timer_base *base;
unsigned long flags;
int ret = -1;
debug_assert_init(timer);
base = lock_timer_base(timer, &flags);
if (base->running_timer != timer)
ret = detach_if_pending(timer, base, true);
raw_spin_unlock_irqrestore(&base->lock, flags);
return ret;
}
EXPORT_SYMBOL(try_to_del_timer_sync);
#ifdef CONFIG_PREEMPT_RT
static __init void timer_base_init_expiry_lock(struct timer_base *base)
{
spin_lock_init(&base->expiry_lock);
}
static inline void timer_base_lock_expiry(struct timer_base *base)
{
spin_lock(&base->expiry_lock);
}
static inline void timer_base_unlock_expiry(struct timer_base *base)
{
spin_unlock(&base->expiry_lock);
}
/*
* The counterpart to del_timer_wait_running().
*
* If there is a waiter for base->expiry_lock, then it was waiting for the
* timer callback to finish. Drop expiry_lock and reaquire it. That allows
* the waiter to acquire the lock and make progress.
*/
static void timer_sync_wait_running(struct timer_base *base)
{
if (atomic_read(&base->timer_waiters)) {
raw_spin_unlock_irq(&base->lock);
spin_unlock(&base->expiry_lock);
spin_lock(&base->expiry_lock);
raw_spin_lock_irq(&base->lock);
}
}
/*
* This function is called on PREEMPT_RT kernels when the fast path
* deletion of a timer failed because the timer callback function was
* running.
*
* This prevents priority inversion, if the softirq thread on a remote CPU
* got preempted, and it prevents a life lock when the task which tries to
* delete a timer preempted the softirq thread running the timer callback
* function.
*/
static void del_timer_wait_running(struct timer_list *timer)
{
u32 tf;
tf = READ_ONCE(timer->flags);
if (!(tf & TIMER_MIGRATING)) {
struct timer_base *base = get_timer_base(tf);
/*
* Mark the base as contended and grab the expiry lock,
* which is held by the softirq across the timer
* callback. Drop the lock immediately so the softirq can
* expire the next timer. In theory the timer could already
* be running again, but that's more than unlikely and just
* causes another wait loop.
*/
atomic_inc(&base->timer_waiters);
spin_lock_bh(&base->expiry_lock);
atomic_dec(&base->timer_waiters);
spin_unlock_bh(&base->expiry_lock);
}
}
#else
static inline void timer_base_init_expiry_lock(struct timer_base *base) { }
static inline void timer_base_lock_expiry(struct timer_base *base) { }
static inline void timer_base_unlock_expiry(struct timer_base *base) { }
static inline void timer_sync_wait_running(struct timer_base *base) { }
static inline void del_timer_wait_running(struct timer_list *timer) { }
#endif
/**
* del_timer_sync - Deactivate a timer and wait for the handler to finish.
* @timer: The timer to be deactivated
*
* Synchronization rules: Callers must prevent restarting of the timer,
* otherwise this function is meaningless. It must not be called from
* interrupt contexts unless the timer is an irqsafe one. The caller must
* not hold locks which would prevent completion of the timer's callback
* function. The timer's handler must not call add_timer_on(). Upon exit
* the timer is not queued and the handler is not running on any CPU.
*
* For !irqsafe timers, the caller must not hold locks that are held in
* interrupt context. Even if the lock has nothing to do with the timer in
* question. Here's why::
*
* CPU0 CPU1
* ---- ----
* <SOFTIRQ>
* call_timer_fn();
* base->running_timer = mytimer;
* spin_lock_irq(somelock);
* <IRQ>
* spin_lock(somelock);
* del_timer_sync(mytimer);
* while (base->running_timer == mytimer);
*
* Now del_timer_sync() will never return and never release somelock.
* The interrupt on the other CPU is waiting to grab somelock but it has
* interrupted the softirq that CPU0 is waiting to finish.
*
* This function cannot guarantee that the timer is not rearmed again by
* some concurrent or preempting code, right after it dropped the base
* lock. If there is the possibility of a concurrent rearm then the return
* value of the function is meaningless.
*
* Return:
* * %0 - The timer was not pending
* * %1 - The timer was pending and deactivated
*/
int del_timer_sync(struct timer_list *timer)
{
int ret;
#ifdef CONFIG_LOCKDEP
unsigned long flags;
/*
* If lockdep gives a backtrace here, please reference
* the synchronization rules above.
*/
local_irq_save(flags);
lock_map_acquire(&timer->lockdep_map);
lock_map_release(&timer->lockdep_map);
local_irq_restore(flags);
#endif
/*
* don't use it in hardirq context, because it
* could lead to deadlock.
*/
WARN_ON(in_irq() && !(timer->flags & TIMER_IRQSAFE));
do {
ret = try_to_del_timer_sync(timer);
if (unlikely(ret < 0)) {
del_timer_wait_running(timer);
cpu_relax();
}
} while (ret < 0);
return ret;
}
EXPORT_SYMBOL(del_timer_sync);
static void call_timer_fn(struct timer_list *timer,
void (*fn)(struct timer_list *),
unsigned long baseclk)
{
int count = preempt_count();
#ifdef CONFIG_LOCKDEP
/*
* It is permissible to free the timer from inside the
* function that is called from it, this we need to take into
* account for lockdep too. To avoid bogus "held lock freed"
* warnings as well as problems when looking into
* timer->lockdep_map, make a copy and use that here.
*/
struct lockdep_map lockdep_map;
lockdep_copy_map(&lockdep_map, &timer->lockdep_map);
#endif
/*
* Couple the lock chain with the lock chain at
* del_timer_sync() by acquiring the lock_map around the fn()
* call here and in del_timer_sync().
*/
lock_map_acquire(&lockdep_map);
trace_timer_expire_entry(timer, baseclk);
fn(timer);
trace_timer_expire_exit(timer);
lock_map_release(&lockdep_map);
if (count != preempt_count()) {
WARN_ONCE(1, "timer: %pS preempt leak: %08x -> %08x\n",
fn, count, preempt_count());
/*
* Restore the preempt count. That gives us a decent
* chance to survive and extract information. If the
* callback kept a lock held, bad luck, but not worse
* than the BUG() we had.
*/
preempt_count_set(count);
}
}
static void expire_timers(struct timer_base *base, struct hlist_head *head)
{
/*
* This value is required only for tracing. base->clk was
* incremented directly before expire_timers was called. But expiry
* is related to the old base->clk value.
*/
unsigned long baseclk = base->clk - 1;
while (!hlist_empty(head)) {
struct timer_list *timer;
void (*fn)(struct timer_list *);
timer = hlist_entry(head->first, struct timer_list, entry);
base->running_timer = timer;
detach_timer(timer, true);
fn = timer->function;
if (timer->flags & TIMER_IRQSAFE) {
raw_spin_unlock(&base->lock);
call_timer_fn(timer, fn, baseclk);
raw_spin_lock(&base->lock);
base->running_timer = NULL;
} else {
raw_spin_unlock_irq(&base->lock);
call_timer_fn(timer, fn, baseclk);
raw_spin_lock_irq(&base->lock);
base->running_timer = NULL;
timer_sync_wait_running(base);
}
}
}
static int __collect_expired_timers(struct timer_base *base,
struct hlist_head *heads)
{
unsigned long clk = base->clk;
struct hlist_head *vec;
int i, levels = 0;
unsigned int idx;
for (i = 0; i < LVL_DEPTH; i++) {
idx = (clk & LVL_MASK) + i * LVL_SIZE;
if (__test_and_clear_bit(idx, base->pending_map)) {
vec = base->vectors + idx;
hlist_move_list(vec, heads++);
levels++;
}
/* Is it time to look at the next level? */
if (clk & LVL_CLK_MASK)
break;
/* Shift clock for the next level granularity */
clk >>= LVL_CLK_SHIFT;
}
return levels;
}
#ifdef CONFIG_NO_HZ_COMMON
/*
* Find the next pending bucket of a level. Search from level start (@offset)
* + @clk upwards and if nothing there, search from start of the level
* (@offset) up to @offset + clk.
*/
static int next_pending_bucket(struct timer_base *base, unsigned offset,
unsigned clk)
{
unsigned pos, start = offset + clk;
unsigned end = offset + LVL_SIZE;
pos = find_next_bit(base->pending_map, end, start);
if (pos < end)
return pos - start;
pos = find_next_bit(base->pending_map, start, offset);
return pos < start ? pos + LVL_SIZE - start : -1;
}
/*
* Search the first expiring timer in the various clock levels. Caller must
* hold base->lock.
*/
static unsigned long __next_timer_interrupt(struct timer_base *base)
{
unsigned long clk, next, adj;
unsigned lvl, offset = 0;
next = base->clk + NEXT_TIMER_MAX_DELTA;
clk = base->clk;
for (lvl = 0; lvl < LVL_DEPTH; lvl++, offset += LVL_SIZE) {
int pos = next_pending_bucket(base, offset, clk & LVL_MASK);
if (pos >= 0) {
unsigned long tmp = clk + (unsigned long) pos;
tmp <<= LVL_SHIFT(lvl);
if (time_before(tmp, next))
next = tmp;
}
/*
* Clock for the next level. If the current level clock lower
* bits are zero, we look at the next level as is. If not we
* need to advance it by one because that's going to be the
* next expiring bucket in that level. base->clk is the next
* expiring jiffie. So in case of:
*
* LVL5 LVL4 LVL3 LVL2 LVL1 LVL0
* 0 0 0 0 0 0
*
* we have to look at all levels @index 0. With
*
* LVL5 LVL4 LVL3 LVL2 LVL1 LVL0
* 0 0 0 0 0 2
*
* LVL0 has the next expiring bucket @index 2. The upper
* levels have the next expiring bucket @index 1.
*
* In case that the propagation wraps the next level the same
* rules apply:
*
* LVL5 LVL4 LVL3 LVL2 LVL1 LVL0
* 0 0 0 0 F 2
*
* So after looking at LVL0 we get:
*
* LVL5 LVL4 LVL3 LVL2 LVL1
* 0 0 0 1 0
*
* So no propagation from LVL1 to LVL2 because that happened
* with the add already, but then we need to propagate further
* from LVL2 to LVL3.
*
* So the simple check whether the lower bits of the current
* level are 0 or not is sufficient for all cases.
*/
adj = clk & LVL_CLK_MASK ? 1 : 0;
clk >>= LVL_CLK_SHIFT;
clk += adj;
}
return next;
}
/*
* Check, if the next hrtimer event is before the next timer wheel
* event:
*/
static u64 cmp_next_hrtimer_event(u64 basem, u64 expires)
{
u64 nextevt = hrtimer_get_next_event();
/*
* If high resolution timers are enabled
* hrtimer_get_next_event() returns KTIME_MAX.
*/
if (expires <= nextevt)
return expires;
/*
* If the next timer is already expired, return the tick base
* time so the tick is fired immediately.
*/
if (nextevt <= basem)
return basem;
/*
* Round up to the next jiffie. High resolution timers are
* off, so the hrtimers are expired in the tick and we need to
* make sure that this tick really expires the timer to avoid
* a ping pong of the nohz stop code.
*
* Use DIV_ROUND_UP_ULL to prevent gcc calling __divdi3
*/
return DIV_ROUND_UP_ULL(nextevt, TICK_NSEC) * TICK_NSEC;
}
#ifdef CONFIG_SMP
/*
* check_pending_deferrable_timers - Check for unbound deferrable timer expiry
* @cpu - Current CPU
*
* The function checks whether any global deferrable pending timers
* are exipired or not. This function does not check cpu bounded
* diferrable pending timers expiry.
*
* The function returns true when a cpu unbounded deferrable timer is expired.
*/
bool check_pending_deferrable_timers(int cpu)
{
if (cpu == tick_do_timer_cpu ||
tick_do_timer_cpu == TICK_DO_TIMER_NONE) {
if (time_after_eq(jiffies, timer_base_deferrable.clk)
&& !atomic_cmpxchg(&deferrable_pending, 0, 1)) {
return true;
}
}
return false;
}
#endif
/**
* get_next_timer_interrupt - return the time (clock mono) of the next timer
* @basej: base time jiffies
* @basem: base time clock monotonic
*
* Returns the tick aligned clock monotonic time of the next pending
* timer or KTIME_MAX if no timer is pending.
*/
u64 get_next_timer_interrupt(unsigned long basej, u64 basem)
{
struct timer_base *base = this_cpu_ptr(&timer_bases[BASE_STD]);
u64 expires = KTIME_MAX;
unsigned long nextevt;
bool is_max_delta;
/*
* Pretend that there is no timer pending if the cpu is offline.
* Possible pending timers will be migrated later to an active cpu.
*/
if (cpu_is_offline(smp_processor_id()))
return expires;
raw_spin_lock(&base->lock);
nextevt = __next_timer_interrupt(base);
is_max_delta = (nextevt == base->clk + NEXT_TIMER_MAX_DELTA);
base->next_expiry = nextevt;
/*
* We have a fresh next event. Check whether we can forward the
* base. We can only do that when @basej is past base->clk
* otherwise we might rewind base->clk.
*/
if (time_after(basej, base->clk)) {
if (time_after(nextevt, basej))
base->clk = basej;
else if (time_after(nextevt, base->clk))
base->clk = nextevt;
}
if (time_before_eq(nextevt, basej)) {
expires = basem;
base->is_idle = false;
} else {
if (!is_max_delta)
expires = basem + (u64)(nextevt - basej) * TICK_NSEC;
/*
* If we expect to sleep more than a tick, mark the base idle.
* Also the tick is stopped so any added timer must forward
* the base clk itself to keep granularity small. This idle
* logic is only maintained for the BASE_STD base, deferrable
* timers may still see large granularity skew (by design).
*/
if ((expires - basem) > TICK_NSEC) {
base->must_forward_clk = true;
base->is_idle = true;
}
}
raw_spin_unlock(&base->lock);
return cmp_next_hrtimer_event(basem, expires);
}
/**
* timer_clear_idle - Clear the idle state of the timer base
*
* Called with interrupts disabled
*/
void timer_clear_idle(void)
{
struct timer_base *base = this_cpu_ptr(&timer_bases[BASE_STD]);
/*
* We do this unlocked. The worst outcome is a remote enqueue sending
* a pointless IPI, but taking the lock would just make the window for
* sending the IPI a few instructions smaller for the cost of taking
* the lock in the exit from idle path.
*/
base->is_idle = false;
}
static int collect_expired_timers(struct timer_base *base,
struct hlist_head *heads)
{
unsigned long now = READ_ONCE(jiffies);
/*
* NOHZ optimization. After a long idle sleep we need to forward the
* base to current jiffies. Avoid a loop by searching the bitfield for
* the next expiring timer.
*/
if ((long)(now - base->clk) > 2) {
unsigned long next = __next_timer_interrupt(base);
/*
* If the next timer is ahead of time forward to current
* jiffies, otherwise forward to the next expiry time:
*/
if (time_after(next, now)) {
/*
* The call site will increment base->clk and then
* terminate the expiry loop immediately.
*/
base->clk = now;
return 0;
}
base->clk = next;
}
return __collect_expired_timers(base, heads);
}
#else
static inline int collect_expired_timers(struct timer_base *base,
struct hlist_head *heads)
{
return __collect_expired_timers(base, heads);
}
#endif
/*
* Called from the timer interrupt handler to charge one tick to the current
* process. user_tick is 1 if the tick is user time, 0 for system.
*/
void update_process_times(int user_tick)
{
struct task_struct *p = current;
/* Note: this timer irq context must be accounted for as well. */
account_process_tick(p, user_tick);
run_local_timers();
rcu_sched_clock_irq(user_tick);
#ifdef CONFIG_IRQ_WORK
if (in_irq())
irq_work_tick();
#endif
scheduler_tick();
if (IS_ENABLED(CONFIG_POSIX_TIMERS))
run_posix_cpu_timers();
}
/**
* __run_timers - run all expired timers (if any) on this CPU.
* @base: the timer vector to be processed.
*/
static inline void __run_timers(struct timer_base *base)
{
struct hlist_head heads[LVL_DEPTH];
int levels;
if (!time_after_eq(jiffies, base->clk))
return;
timer_base_lock_expiry(base);
raw_spin_lock_irq(&base->lock);
/*
* timer_base::must_forward_clk must be cleared before running
* timers so that any timer functions that call mod_timer() will
* not try to forward the base. Idle tracking / clock forwarding
* logic is only used with BASE_STD timers.
*
* The must_forward_clk flag is cleared unconditionally also for
* the deferrable base. The deferrable base is not affected by idle
* tracking and never forwarded, so clearing the flag is a NOOP.
*
* The fact that the deferrable base is never forwarded can cause
* large variations in granularity for deferrable timers, but they
* can be deferred for long periods due to idle anyway.
*/
base->must_forward_clk = false;
while (time_after_eq(jiffies, base->clk)) {
levels = collect_expired_timers(base, heads);
base->clk++;
while (levels--)
expire_timers(base, heads + levels);
}
raw_spin_unlock_irq(&base->lock);
timer_base_unlock_expiry(base);
}
/*
* This function runs timers and the timer-tq in bottom half context.
*/
static __latent_entropy void run_timer_softirq(struct softirq_action *h)
{
struct timer_base *base = this_cpu_ptr(&timer_bases[BASE_STD]);
__run_timers(base);
if (IS_ENABLED(CONFIG_NO_HZ_COMMON)) {
__run_timers(this_cpu_ptr(&timer_bases[BASE_DEF]));
}
if ((atomic_cmpxchg(&deferrable_pending, 1, 0) &&
tick_do_timer_cpu == TICK_DO_TIMER_NONE) ||
tick_do_timer_cpu == smp_processor_id())
__run_timers(&timer_base_deferrable);
}
/*
* Called by the local, per-CPU timer interrupt on SMP.
*/
void run_local_timers(void)
{
struct timer_base *base = this_cpu_ptr(&timer_bases[BASE_STD]);
hrtimer_run_queues();
/* Raise the softirq only if required. */
if (time_before(jiffies, base->clk)) {
if (!IS_ENABLED(CONFIG_NO_HZ_COMMON))
return;
/* CPU is awake, so check the deferrable base. */
base++;
if (time_before(jiffies, base->clk))
return;
}
raise_softirq(TIMER_SOFTIRQ);
}
/*
* Since schedule_timeout()'s timer is defined on the stack, it must store
* the target task on the stack as well.
*/
struct process_timer {
struct timer_list timer;
struct task_struct *task;
};
static void process_timeout(struct timer_list *t)
{
struct process_timer *timeout = from_timer(timeout, t, timer);
wake_up_process(timeout->task);
}
/**
* schedule_timeout - sleep until timeout
* @timeout: timeout value in jiffies
*
* Make the current task sleep until @timeout jiffies have
* elapsed. The routine will return immediately unless
* the current task state has been set (see set_current_state()).
*
* You can set the task state as follows -
*
* %TASK_UNINTERRUPTIBLE - at least @timeout jiffies are guaranteed to
* pass before the routine returns unless the current task is explicitly
* woken up, (e.g. by wake_up_process())".
*
* %TASK_INTERRUPTIBLE - the routine may return early if a signal is
* delivered to the current task or the current task is explicitly woken
* up.
*
* The current task state is guaranteed to be TASK_RUNNING when this
* routine returns.
*
* Specifying a @timeout value of %MAX_SCHEDULE_TIMEOUT will schedule
* the CPU away without a bound on the timeout. In this case the return
* value will be %MAX_SCHEDULE_TIMEOUT.
*
* Returns 0 when the timer has expired otherwise the remaining time in
* jiffies will be returned. In all cases the return value is guaranteed
* to be non-negative.
*/
signed long __sched schedule_timeout(signed long timeout)
{
struct process_timer timer;
unsigned long expire;
switch (timeout)
{
case MAX_SCHEDULE_TIMEOUT:
/*
* These two special cases are useful to be comfortable
* in the caller. Nothing more. We could take
* MAX_SCHEDULE_TIMEOUT from one of the negative value
* but I' d like to return a valid offset (>=0) to allow
* the caller to do everything it want with the retval.
*/
schedule();
goto out;
default:
/*
* Another bit of PARANOID. Note that the retval will be
* 0 since no piece of kernel is supposed to do a check
* for a negative retval of schedule_timeout() (since it
* should never happens anyway). You just have the printk()
* that will tell you if something is gone wrong and where.
*/
if (timeout < 0) {
printk(KERN_ERR "schedule_timeout: wrong timeout "
"value %lx\n", timeout);
dump_stack();
current->state = TASK_RUNNING;
goto out;
}
}
expire = timeout + jiffies;
timer.task = current;
timer_setup_on_stack(&timer.timer, process_timeout, 0);
__mod_timer(&timer.timer, expire, 0);
schedule();
del_singleshot_timer_sync(&timer.timer);
/* Remove the timer from the object tracker */
destroy_timer_on_stack(&timer.timer);
timeout = expire - jiffies;
out:
return timeout < 0 ? 0 : timeout;
}
EXPORT_SYMBOL(schedule_timeout);
/*
* We can use __set_current_state() here because schedule_timeout() calls
* schedule() unconditionally.
*/
signed long __sched schedule_timeout_interruptible(signed long timeout)
{
__set_current_state(TASK_INTERRUPTIBLE);
return schedule_timeout(timeout);
}
EXPORT_SYMBOL(schedule_timeout_interruptible);
signed long __sched schedule_timeout_killable(signed long timeout)
{
__set_current_state(TASK_KILLABLE);
return schedule_timeout(timeout);
}
EXPORT_SYMBOL(schedule_timeout_killable);
signed long __sched schedule_timeout_uninterruptible(signed long timeout)
{
__set_current_state(TASK_UNINTERRUPTIBLE);
return schedule_timeout(timeout);
}
EXPORT_SYMBOL(schedule_timeout_uninterruptible);
/*
* Like schedule_timeout_uninterruptible(), except this task will not contribute
* to load average.
*/
signed long __sched schedule_timeout_idle(signed long timeout)
{
__set_current_state(TASK_IDLE);
return schedule_timeout(timeout);
}
EXPORT_SYMBOL(schedule_timeout_idle);
#ifdef CONFIG_HOTPLUG_CPU
static void migrate_timer_list(struct timer_base *new_base,
struct hlist_head *head, bool remove_pinned)
{
struct timer_list *timer;
int cpu = new_base->cpu;
struct hlist_node *n;
int is_pinned;
hlist_for_each_entry_safe(timer, n, head, entry) {
is_pinned = timer->flags & TIMER_PINNED;
if (!remove_pinned && is_pinned)
continue;
detach_if_pending(timer, get_timer_base(timer->flags), false);
timer->flags = (timer->flags & ~TIMER_BASEMASK) | cpu;
internal_add_timer(new_base, timer);
}
}
int timers_prepare_cpu(unsigned int cpu)
{
struct timer_base *base;
int b;
for (b = 0; b < NR_BASES; b++) {
base = per_cpu_ptr(&timer_bases[b], cpu);
base->clk = jiffies;
base->next_expiry = base->clk + NEXT_TIMER_MAX_DELTA;
base->is_idle = false;
base->must_forward_clk = true;
}
return 0;
}
static void __migrate_timers(unsigned int cpu, bool remove_pinned)
{
struct timer_base *old_base;
struct timer_base *new_base;
unsigned long flags;
int b, i;
for (b = 0; b < NR_BASES; b++) {
old_base = per_cpu_ptr(&timer_bases[b], cpu);
new_base = get_cpu_ptr(&timer_bases[b]);
/*
* The caller is globally serialized and nobody else
* takes two locks at once, deadlock is not possible.
*/
raw_spin_lock_irqsave(&new_base->lock, flags);
raw_spin_lock_nested(&old_base->lock, SINGLE_DEPTH_NESTING);
/*
* The current CPUs base clock might be stale. Update it
* before moving the timers over.
*/
forward_timer_base(new_base);
if (!cpu_online(cpu))
BUG_ON(old_base->running_timer);
for (i = 0; i < WHEEL_SIZE; i++)
migrate_timer_list(new_base, old_base->vectors + i,
remove_pinned);
raw_spin_unlock(&old_base->lock);
raw_spin_unlock_irqrestore(&new_base->lock, flags);
put_cpu_ptr(&timer_bases);
}
}
int timers_dead_cpu(unsigned int cpu)
{
BUG_ON(cpu_online(cpu));
__migrate_timers(cpu, true);
return 0;
}
void timer_quiesce_cpu(void *cpup)
{
__migrate_timers(*(unsigned int *)cpup, false);
}
#endif /* CONFIG_HOTPLUG_CPU */
static void __init init_timer_cpu(int cpu)
{
struct timer_base *base;
int i;
for (i = 0; i < NR_BASES; i++) {
base = per_cpu_ptr(&timer_bases[i], cpu);
base->cpu = cpu;
raw_spin_lock_init(&base->lock);
base->clk = jiffies;
timer_base_init_expiry_lock(base);
}
}
static inline void init_timer_deferrable_global(void)
{
timer_base_deferrable.cpu = nr_cpu_ids;
raw_spin_lock_init(&timer_base_deferrable.lock);
timer_base_deferrable.clk = jiffies;
}
static void __init init_timer_cpus(void)
{
int cpu;
init_timer_deferrable_global();
for_each_possible_cpu(cpu)
init_timer_cpu(cpu);
}
void __init init_timers(void)
{
init_timer_cpus();
open_softirq(TIMER_SOFTIRQ, run_timer_softirq);
}
/**
* msleep - sleep safely even with waitqueue interruptions
* @msecs: Time in milliseconds to sleep for
*/
void msleep(unsigned int msecs)
{
unsigned long timeout = msecs_to_jiffies(msecs) + 1;
while (timeout)
timeout = schedule_timeout_uninterruptible(timeout);
}
EXPORT_SYMBOL(msleep);
/**
* msleep_interruptible - sleep waiting for signals
* @msecs: Time in milliseconds to sleep for
*/
unsigned long msleep_interruptible(unsigned int msecs)
{
unsigned long timeout = msecs_to_jiffies(msecs) + 1;
while (timeout && !signal_pending(current))
timeout = schedule_timeout_interruptible(timeout);
return jiffies_to_msecs(timeout);
}
EXPORT_SYMBOL(msleep_interruptible);
/**
* usleep_range - Sleep for an approximate time
* @min: Minimum time in usecs to sleep
* @max: Maximum time in usecs to sleep
*
* In non-atomic context where the exact wakeup time is flexible, use
* usleep_range() instead of udelay(). The sleep improves responsiveness
* by avoiding the CPU-hogging busy-wait of udelay(), and the range reduces
* power usage by allowing hrtimers to take advantage of an already-
* scheduled interrupt instead of scheduling a new one just for this sleep.
*/
void __sched usleep_range(unsigned long min, unsigned long max)
{
ktime_t exp = ktime_add_us(ktime_get(), min);
u64 delta = (u64)(max - min) * NSEC_PER_USEC;
for (;;) {
__set_current_state(TASK_UNINTERRUPTIBLE);
/* Do not return before the requested sleep time has elapsed */
if (!schedule_hrtimeout_range(&exp, delta, HRTIMER_MODE_ABS))
break;
}
}
EXPORT_SYMBOL(usleep_range);