Files
android_kernel_xiaomi_sm8450/mm/migrate.c
Greg Kroah-Hartman 9c2a5eef8f Merge tag 'android12-5.10.117_r00' into 'android12-5.10'
This is the merge of the upstream LTS release of 5.10.117 into the
android12-5.10 branch.

It contains the following commits:

fdd06dc6b0 ANDROID: GKI: db845c: Update symbols list and ABI
0974b8411a Merge 5.10.117 into android12-5.10-lts
7686a5c2a8 Linux 5.10.117
937c6b0e3e SUNRPC: Fix fall-through warnings for Clang
29f077d070 io_uring: always use original task when preparing req identity
1444e0568b usb: gadget: uvc: allow for application to cleanly shutdown
42505e3622 usb: gadget: uvc: rename function to be more consistent
002e7223dc ping: fix address binding wrt vrf
d9a1e82bf6 arm[64]/memremap: don't abuse pfn_valid() to ensure presence of linear map
49750c5e9a net: phy: Fix race condition on link status change
e68b60ae29 SUNRPC: Ensure we flush any closed sockets before xs_xprt_free()
dbe6974a39 SUNRPC: Don't call connect() more than once on a TCP socket
47541ed4d4 SUNRPC: Prevent immediate close+reconnect
2ab569edd8 SUNRPC: Clean up scheduling of autoclose
85844ea29f drm/vmwgfx: Initialize drm_mode_fb_cmd2
7e849dbe60 cgroup/cpuset: Remove cpus_allowed/mems_allowed setup in cpuset_init_smp()
6aa239d82e net: atlantic: always deep reset on pm op, fixing up my null deref regression
6158df4fa5 i40e: i40e_main: fix a missing check on list iterator
819796024c drm/nouveau/tegra: Stop using iommu_present()
e06605af8b ceph: fix setting of xattrs on async created inodes
86db01f373 serial: 8250_mtk: Fix register address for XON/XOFF character
84ad84e495 serial: 8250_mtk: Fix UART_EFR register address
f8d8440f13 slimbus: qcom: Fix IRQ check in qcom_slim_probe
d7b7c5532a USB: serial: option: add Fibocom MA510 modem
2ba0034e36 USB: serial: option: add Fibocom L610 modem
319b312edb USB: serial: qcserial: add support for Sierra Wireless EM7590
994395f356 USB: serial: pl2303: add device id for HP LM930 Display
8276a3dbe2 usb: typec: tcpci_mt6360: Update for BMC PHY setting
54979aa49e usb: typec: tcpci: Don't skip cleanup in .remove() on error
7335a6b11d usb: cdc-wdm: fix reading stuck on device close
6d47eceaf3 tty: n_gsm: fix mux activation issues in gsm_config()
69139a45b8 tty/serial: digicolor: fix possible null-ptr-deref in digicolor_uart_probe()
5a73581116 firmware_loader: use kernel credentials when reading firmware
d254309aab tcp: resalt the secret every 10 seconds
3abbfac1ab net: sfp: Add tx-fault workaround for Huawei MA5671A SFP ONT
48f1dd67a8 net: emaclite: Don't advertise 1000BASE-T and do auto negotiation
5c09dbdfd4 s390: disable -Warray-bounds
03ebc6fd5c ASoC: ops: Validate input values in snd_soc_put_volsw_range()
31606a73ba ASoC: max98090: Generate notifications on changes for custom control
ce154bd3bc ASoC: max98090: Reject invalid values in custom control put()
5ecaaaeb2c hwmon: (f71882fg) Fix negative temperature
88091c0275 gfs2: Fix filesystem block deallocation for short writes
fccf4bf3f2 tls: Fix context leak on tls_device_down
161c4edeca net: sfc: ef10: fix memory leak in efx_ef10_mtd_probe()
d5e1b41bf7 net/smc: non blocking recvmsg() return -EAGAIN when no data and signal_pending
e417a8fcea net: dsa: bcm_sf2: Fix Wake-on-LAN with mac_link_down()
9012209f43 net: bcmgenet: Check for Wake-on-LAN interrupt probe deferral
abe35bf3be net/sched: act_pedit: really ensure the skb is writable
b816ed53f3 s390/lcs: fix variable dereferenced before check
4d3c6d7418 s390/ctcm: fix potential memory leak
5497f87edc s390/ctcm: fix variable dereferenced before check
cc71c9f17c selftests: vm: Makefile: rename TARGETS to VMTARGETS
ce12e5ff8d hwmon: (ltq-cputemp) restrict it to SOC_XWAY
ceb3db723f dim: initialize all struct fields
8b1b8fc819 ionic: fix missing pci_release_regions() on error in ionic_probe()
2cb8689f45 nfs: fix broken handling of the softreval mount option
49c10784b9 mac80211_hwsim: call ieee80211_tx_prepare_skb under RCU protection
79432d2237 net: sfc: fix memory leak due to ptp channel
bdb8d4aed1 sfc: Use swap() instead of open coding it
33c93f6e55 netlink: do not reset transport header in netlink_recvmsg()
9e40f2c513 drm/nouveau: Fix a potential theorical leak in nouveau_get_backlight_name()
54f26fc07e ipv4: drop dst in multicast routing path
c07a84492f net: mscc: ocelot: avoid corrupting hardware counters when moving VCAP filters
abb237c544 net: mscc: ocelot: restrict tc-trap actions to VCAP IS2 lookup 0
f9674c52a1 net: mscc: ocelot: fix VCAP IS2 filters matching on both lookups
c1184d2888 net: mscc: ocelot: fix last VCAP IS1/IS2 filter persisting in hardware when deleted
e2cdde89d2 net: Fix features skip in for_each_netdev_feature()
c420d66047 mac80211: Reset MBSSID parameters upon connection
9cbf2a7d5d hwmon: (tmp401) Add OF device ID table
85eba08be2 iwlwifi: iwl-dbg: Use del_timer_sync() before freeing
a6a73781b4 batman-adv: Don't skb_split skbuffs with frag_list
0577ff1c69 Merge 5.10.116 into android12-5.10-lts
3f70116e5f Merge 5.10.115 into android12-5.10-lts
07a4d3649a Linux 5.10.116
d1ac096f88 mm: userfaultfd: fix missing cache flush in mcopy_atomic_pte() and __mcopy_atomic()
c6cbf5431a mm: hugetlb: fix missing cache flush in copy_huge_page_from_user()
308ff6a6e7 mm: fix missing cache flush for all tail pages of compound page
185fa5984d Bluetooth: Fix the creation of hdev->name
9ff4a6b806 arm: remove CONFIG_ARCH_HAS_HOLES_MEMORYMODEL
dfb55dcf9d nfp: bpf: silence bitwise vs. logical OR warning
f89f76f4b0 drm/amd/display/dc/gpio/gpio_service: Pass around correct dce_{version, environment} types
efd1429fa9 block: drbd: drbd_nl: Make conversion to 'enum drbd_ret_code' explicit
a71658c7db regulator: consumer: Add missing stubs to regulator/consumer.h
7648f42d1a MIPS: Use address-of operator on section symbols
2ed28105c6 ANDROID: GKI: update the abi .xml file due to hex_to_bin() changes
ee8877df71 Revert "tcp: ensure to use the most recently sent skb when filling the rate sample"
6273d79c86 Merge 5.10.114 into android12-5.10-lts
e61686bb77 Linux 5.10.115
8528806abe mmc: rtsx: add 74 Clocks in power on flow
e1ab92302b PCI: aardvark: Fix reading MSI interrupt number
49143c9ed2 PCI: aardvark: Clear all MSIs at setup
7676a5b99f dm: interlock pending dm_io and dm_wait_for_bios_completion
a439819f47 block-map: add __GFP_ZERO flag for alloc_page in function bio_copy_kern
a22d66eb51 rcu: Apply callbacks processing time limit only on softirq
40fb3812d9 rcu: Fix callbacks processing time limit retaining cond_resched()
43dbc3edad KVM: LAPIC: Enable timer posted-interrupt only when mwait/hlt is advertised
9c8474fa34 KVM: x86/mmu: avoid NULL-pointer dereference on page freeing bugs
a474ee5ece KVM: x86: Do not change ICR on write to APIC_SELF_IPI
64e3e16dbc x86/kvm: Preserve BSP MSR_KVM_POLL_CONTROL across suspend/resume
5f884e0c2e net/mlx5: Fix slab-out-of-bounds while reading resource dump menu
599fc32e74 kvm: x86/cpuid: Only provide CPUID leaf 0xA if host has architectural PMU
0a960a3672 net: igmp: respect RCU rules in ip_mc_source() and ip_mc_msfilter()
4fd45ef704 btrfs: always log symlinks in full mode
687167eef9 smsc911x: allow using IRQ0
b280877eab selftests: ocelot: tc_flower_chains: specify conform-exceed action for policer
a9fd5d6cd5 bnxt_en: Fix unnecessary dropping of RX packets
72e4fc1a4e bnxt_en: Fix possible bnxt_open() failure caused by wrong RFS flag
9ac9f07f0f selftests: mirror_gre_bridge_1q: Avoid changing PVID while interface is operational
475237e807 hinic: fix bug of wq out of bound access
1b9f1f455d net: emaclite: Add error handling for of_address_to_resource()
8459485db7 net: cpsw: add missing of_node_put() in cpsw_probe_dt()
4eee980950 net: stmmac: dwmac-sun8i: add missing of_node_put() in sun8i_dwmac_register_mdio_mux()
2347e9c922 net: dsa: mt7530: add missing of_node_put() in mt7530_setup()
1092656cc4 net: ethernet: mediatek: add missing of_node_put() in mtk_sgmii_init()
408fb2680e NFSv4: Don't invalidate inode attributes on delegation return
c1b480e6be RDMA/siw: Fix a condition race issue in MPA request processing
5bf2a45e33 selftests/seccomp: Don't call read() on TTY from background pgrp
3ea0b44c01 net/mlx5: Avoid double clear or set of sync reset requested
2455331591 net/mlx5e: Fix the calling of update_buffer_lossy() API
e07c13fbdd net/mlx5e: CT: Fix queued up restore put() executing after relevant ft release
d8338a7a09 net/mlx5e: Don't match double-vlan packets if cvlan is not set
c7f87ad115 net/mlx5e: Fix trust state reset in reload
87f0d9a518 ASoC: dmaengine: Restore NULL prepare_slave_config() callback
ad87f8498e hwmon: (adt7470) Fix warning on module removal
997b8605e8 gpio: pca953x: fix irq_stat not updated when irq is disabled (irq_mask not set)
879b075a9a NFC: netlink: fix sleep in atomic bug when firmware download timeout
1961c5a688 nfc: nfcmrvl: main: reorder destructive operations in nfcmrvl_nci_unregister_dev to avoid bugs
8a9e7c64f4 nfc: replace improper check device_is_registered() in netlink related functions
11adc9ab3e can: grcan: only use the NAPI poll budget for RX
4df5e498e0 can: grcan: grcan_probe(): fix broken system id check for errata workaround needs
dd973c0185 can: grcan: use ofdev->dev when allocating DMA memory
45bdcb5ca4 can: isotp: remove re-binding of bound socket
13959b9117 can: grcan: grcan_close(): fix deadlock
6c7c0e131e s390/dasd: Fix read inconsistency for ESE DASD devices
6e02c0413a s390/dasd: Fix read for ESE with blksize < 4k
ecc8396827 s390/dasd: prevent double format of tracks for ESE devices
30e008ab3f s390/dasd: fix data corruption for ESE devices
d53d47fadd ASoC: meson: Fix event generation for AUI CODEC mux
93a1f0755e ASoC: meson: Fix event generation for G12A tohdmi mux
e8b08e2f17 ASoC: meson: Fix event generation for AUI ACODEC mux
954d55170f ASoC: wm8958: Fix change notifications for DSP controls
f45359824a ASoC: da7219: Fix change notifications for tone generator frequency
e6e61aab49 genirq: Synchronize interrupt thread startup
dcf1150f2e net: stmmac: disable Split Header (SPH) for Intel platforms
68f35987d4 firewire: core: extend card->lock in fw_core_handle_bus_reset
629b4003a7 firewire: remove check of list iterator against head past the loop body
e757ff4bbc firewire: fix potential uaf in outbound_phy_packet_callback()
70d25d4fba Revert "SUNRPC: attempt AF_LOCAL connect on setup"
466721d767 drm/amd/display: Avoid reading audio pattern past AUDIO_CHANNELS_COUNT
2e6f3d665a iommu/vt-d: Calculate mask for non-aligned flushes
fbb7c61e76 KVM: x86/svm: Account for family 17h event renumberings in amd_pmc_perf_hw_id
b085afe226 gpiolib: of: fix bounds check for 'gpio-reserved-ranges'
2b7cb072d0 mmc: core: Set HS clock speed before sending HS CMD13
66651d7199 mmc: sdhci-msm: Reset GCC_SDCC_BCR register for SDHC
2906c73632 ALSA: fireworks: fix wrong return count shorter than expected by 4 bytes
03ab174805 ALSA: hda/realtek: Add quirk for Yoga Duet 7 13ITL6 speakers
a196f277c5 parisc: Merge model and model name into one line in /proc/cpuinfo
326f02f172 MIPS: Fix CP0 counter erratum detection for R4k CPUs
681997eca1 Revert "ipv6: make ip6_rt_gc_expire an atomic_t"
141fbd343b Revert "oom_kill.c: futex: delay the OOM reaper to allow time for proper futex cleanup"
ca9b002a16 Merge 5.10.113 into android12-5.10-lts
f64cd19a00 Merge branch 'android12-5.10' into `android12-5.10-lts`
f40e35e79c Linux 5.10.114
2d74f61787 perf symbol: Remove arch__symbols__fixup_end()
bf98302e68 tty: n_gsm: fix software flow control handling
95b267271a tty: n_gsm: fix incorrect UA handling
70b045d9ae tty: n_gsm: fix reset fifo race condition
320a24c4ef tty: n_gsm: fix wrong command frame length field encoding
935f314b6f tty: n_gsm: fix wrong command retry handling
17b86db43c tty: n_gsm: fix missing explicit ldisc flush
a2baa907c2 tty: n_gsm: fix wrong DLCI release order
705925e693 tty: n_gsm: fix insufficient txframe size
842a9bbbef netfilter: nft_socket: only do sk lookups when indev is available
7346e54dbf tty: n_gsm: fix malformed counter for out of frame data
d19613895e tty: n_gsm: fix wrong signal octet encoding in convergence layer type 2
26f127f6d9 tty: n_gsm: fix mux cleanup after unregister tty device
f26c271492 tty: n_gsm: fix decoupled mux resource
47132f9f7f tty: n_gsm: fix restart handling via CLD command
b3c88d46db perf symbol: Update symbols__fixup_end()
3d0a3168a3 perf symbol: Pass is_kallsyms to symbols__fixup_end()
2ab14625b8 x86/cpu: Load microcode during restore_processor_state()
795afbe8b4 thermal: int340x: Fix attr.show callback prototype
11d16498d7 net: ethernet: stmmac: fix write to sgmii_adapter_base
236dd62230 drm/i915: Fix SEL_FETCH_PLANE_*(PIPE_B+) register addresses
78d4dccf16 kasan: prevent cpu_quarantine corruption when CPU offline and cache shrink occur at same time
5fef6df273 zonefs: Clear inode information flags on inode creation
92ed64a920 zonefs: Fix management of open zones
42e8ec3b4b powerpc/perf: Fix 32bit compile
ac3d077043 drivers: net: hippi: Fix deadlock in rr_close()
5399e7b80c cifs: destage any unwritten data to the server before calling copychunk_write
80fc45377f x86: __memcpy_flushcache: fix wrong alignment if size > 2^32
585ef03c9e ext4: fix bug_on in start_this_handle during umount filesystem
07da0be588 ASoC: wm8731: Disable the regulator when probing fails
1b1747ad7e ASoC: Intel: soc-acpi: correct device endpoints for max98373
aa138efd2b tcp: fix F-RTO may not work correctly when receiving DSACK
9d56e369bd Revert "ibmvnic: Add ethtool private flag for driver-defined queue limits"
96904c8289 ibmvnic: fix miscellaneous checks
17f71272ef ixgbe: ensure IPsec VF<->PF compatibility
c33d717e06 net: fec: add missing of_node_put() in fec_enet_init_stop_mode()
9591967ac4 bnx2x: fix napi API usage sequence
1781beb879 tls: Skip tls_append_frag on zero copy size
77b922683e drm/amd/display: Fix memory leak in dcn21_clock_source_create
18068e0527 drm/amdkfd: Fix GWS queue count
c0396f5e5b net: dsa: lantiq_gswip: Don't set GSWIP_MII_CFG_RMII_CLK
1204386e26 net: phy: marvell10g: fix return value on error
e974c730f0 net: bcmgenet: hide status block before TX timestamping
ee71b47da5 clk: sunxi: sun9i-mmc: check return value after calling platform_get_resource()
8dacbef4fe bus: sunxi-rsb: Fix the return value of sunxi_rsb_device_create()
9f29f6f8da tcp: make sure treq->af_specific is initialized
8a9d6ca360 tcp: fix potential xmit stalls caused by TCP_NOTSENT_LOWAT
720b6ced85 ip_gre, ip6_gre: Fix race condition on o_seqno in collect_md mode
41661b4c1a ip6_gre: Make o_seqno start from 0 in native mode
7b187fbd7e ip_gre: Make o_seqno start from 0 in native mode
83d128daff net/smc: sync err code when tcp connection was refused
9eb25e00f5 net: hns3: add return value for mailbox handling in PF
929c30c02d net: hns3: add validity check for message data length
e3ec78d82d net: hns3: modify the return code of hclge_get_ring_chain_from_mbx
06a40e7105 cpufreq: fix memory leak in sun50i_cpufreq_nvmem_probe
fb172e93f8 pinctrl: pistachio: fix use of irq_of_parse_and_map()
8f042884af arm64: dts: imx8mn-ddr4-evk: Describe the 32.768 kHz PMIC clock
73c35379db ARM: dts: imx6ull-colibri: fix vqmmc regulator
61a89d0a5b sctp: check asoc strreset_chunk in sctp_generate_reconf_event
41d6ac687d wireguard: device: check for metadata_dst with skb_valid_dst()
3c464db03c tcp: ensure to use the most recently sent skb when filling the rate sample
ce4c3f7087 pinctrl: stm32: Keep pinctrl block clock enabled when LEVEL IRQ requested
0c60271df0 tcp: md5: incorrect tcp_header_len for incoming connections
f4dad5a48d pinctrl: rockchip: fix RK3308 pinmux bits
9ef33d23f8 bpf, lwt: Fix crash when using bpf_skb_set_tunnel_key() from bpf_xmit lwt hook
6ac03e6ddd netfilter: nft_set_rbtree: overlap detection with element re-addition after deletion
72ae15d5ce net: dsa: Add missing of_node_put() in dsa_port_link_register_of
14cc2044c1 memory: renesas-rpc-if: Fix HF/OSPI data transfer in Manual Mode
690c1bc4bf pinctrl: stm32: Do not call stm32_gpio_get() for edge triggered IRQs in EOI
6f2bf9c5dd mtd: fix 'part' field data corruption in mtd_info
4da421035b mtd: rawnand: Fix return value check of wait_for_completion_timeout
94ca69b702 pinctrl: mediatek: moore: Fix build error
123b7e0388 ipvs: correctly print the memory size of ip_vs_conn_tab
f4446f2136 ARM: dts: logicpd-som-lv: Fix wrong pinmuxing on OMAP35
4a526cc29c ARM: dts: am3517-evm: Fix misc pinmuxing
b622bca852 ARM: dts: Fix mmc order for omap3-gta04
9419d27fe1 phy: ti: Add missing pm_runtime_disable() in serdes_am654_probe
9e00a6e1fd phy: mapphone-mdm6600: Fix PM error handling in phy_mdm6600_probe
eb659608e6 ARM: dts: at91: sama5d4_xplained: fix pinctrl phandle name
bb524f5a95 ARM: dts: at91: Map MCLK for wm8731 on at91sam9g20ek
4691ce8f28 phy: ti: omap-usb2: Fix error handling in omap_usb2_enable_clocks
76d1591a38 bus: ti-sysc: Make omap3 gpt12 quirk handling SoC specific
1b9855bf31 ARM: OMAP2+: Fix refcount leak in omap_gic_of_init
93cc8f184e phy: samsung: exynos5250-sata: fix missing device put in probe error paths
3ca7491570 phy: samsung: Fix missing of_node_put() in exynos_sata_phy_probe
8f7644ac24 ARM: dts: imx6qdl-apalis: Fix sgtl5000 detection issue
23b0711fcd USB: Fix xhci event ring dequeue pointer ERDP update issue
712302aed1 mtd: rawnand: fix ecc parameters for mt7622
207c7af341 iio:imu:bmi160: disable regulator in error path
70d2df257e arm64: dts: meson: remove CPU opps below 1GHz for SM1 boards
2d320609be arm64: dts: meson: remove CPU opps below 1GHz for G12B boards
c4fb41bdf4 video: fbdev: udlfb: properly check endpoint type
0967830e72 iocost: don't reset the inuse weight of under-weighted debtors
ad604cbd1d x86/pci/xen: Disable PCI/MSI[-X] masking for XEN_HVM guests
8fcce58c59 riscv: patch_text: Fixup last cpu should be master
51477d3b38 hex2bin: fix access beyond string end
616d354fb9 hex2bin: make the function hex_to_bin constant-time
1633cb2d4a pinctrl: samsung: fix missing GPIOLIB on ARM64 Exynos config
bdc3ad9251 arch_topology: Do not set llc_sibling if llc_id is invalid
aaee3f6617 serial: 8250: Correct the clock for EndRun PTP/1588 PCIe device
662f945a20 serial: 8250: Also set sticky MCR bits in console restoration
8be962c89d serial: imx: fix overrun interrupts in DMA mode
d22d92230f usb: phy: generic: Get the vbus supply
b820764c64 usb: cdns3: Fix issue for clear halt endpoint
bd7f84708e usb: dwc3: gadget: Return proper request status
a633b8c341 usb: dwc3: core: Only handle soft-reset in DCTL
5fa59bb867 usb: dwc3: core: Fix tx/rx threshold settings
140801d3fb usb: dwc3: Try usb-role-switch first in dwc3_drd_init
4dd5feb279 usb: gadget: configfs: clear deactivation flag in configfs_composite_unbind()
6c3da0e19c usb: gadget: uvc: Fix crash when encoding data for usb request
fb1fe1a455 usb: typec: ucsi: Fix role swapping
06826eb063 usb: typec: ucsi: Fix reuse of completion structure
7b510d4bb4 usb: misc: fix improper handling of refcount in uss720_probe()
bb8ecca2dd iio: imu: inv_icm42600: Fix I2C init possible nack
ca2b54b6ad iio: magnetometer: ak8975: Fix the error handling in ak8975_power_on()
1060604fc7 iio: dac: ad5446: Fix read_raw not returning set value
6ff33c01be iio: dac: ad5592r: Fix the missing return value.
06ada9487f xhci: increase usb U3 -> U0 link resume timeout from 100ms to 500ms
e1be000166 xhci: stop polling roothubs after shutdown
2eb6c86891 xhci: Enable runtime PM on second Alderlake controller
63eda431b2 USB: serial: option: add Telit 0x1057, 0x1058, 0x1075 compositions
e9971dac69 USB: serial: option: add support for Cinterion MV32-WA/MV32-WB
34ff5455ee USB: serial: cp210x: add PIDs for Kamstrup USB Meter Reader
729a81ae10 USB: serial: whiteheat: fix heap overflow in WHITEHEAT_GET_DTR_RTS
008ba29f33 USB: quirks: add STRING quirk for VCOM device
ac6ad0ef83 USB: quirks: add a Realtek card reader
8ba02cebb7 usb: mtu3: fix USB 3.0 dual-role-switch from device to host
549209caab lightnvm: disable the subsystem
54c028cfc4 floppy: disable FDRAWCMD by default
de64d941a7 Merge 5.10.112 into android12-5.10-lts
54af9dd2b9 Linux 5.10.113
7992fdb045 Revert "net: micrel: fix KS8851_MLL Kconfig"
8bedbc8f7f block/compat_ioctl: fix range check in BLKGETSIZE
fea24b07ed staging: ion: Prevent incorrect reference counting behavour
dccee748af spi: atmel-quadspi: Fix the buswidth adjustment between spi-mem and controller
572761645b jbd2: fix a potential race while discarding reserved buffers after an abort
50aac44273 can: isotp: stop timeout monitoring when no first frame was sent
e1e96e3727 ext4: force overhead calculation if the s_overhead_cluster makes no sense
4789149b9e ext4: fix overhead calculation to account for the reserved gdt blocks
0c54b09376 ext4, doc: fix incorrect h_reserved size
22c450d39f ext4: limit length to bitmap_maxbytes - blocksize in punch_hole
75ac724684 ext4: fix use-after-free in ext4_search_dir
a46b3d8498 ext4: fix symlink file size not match to file content
f6038d43b2 ext4: fix fallocate to use file_modified to update permissions consistently
19590bbc69 perf report: Set PERF_SAMPLE_DATA_SRC bit for Arm SPE event
e012f9d1af powerpc/perf: Fix power9 event alternatives
0a2cef65b3 drm/vc4: Use pm_runtime_resume_and_get to fix pm_runtime_get_sync() usage
f8f8b3124b KVM: PPC: Fix TCE handling for VFIO
405d984274 drm/panel/raspberrypi-touchscreen: Initialise the bridge in prepare
231381f521 drm/panel/raspberrypi-touchscreen: Avoid NULL deref if not initialised
51d9cbbb0f perf/core: Fix perf_mmap fail when CONFIG_PERF_USE_VMALLOC enabled
88fcfd6ee6 sched/pelt: Fix attach_entity_load_avg() corner case
c55327bc37 arm_pmu: Validate single/group leader events
5580b974a8 ARC: entry: fix syscall_trace_exit argument
7082650eb8 e1000e: Fix possible overflow in LTR decoding
43a2a3734a ASoC: soc-dapm: fix two incorrect uses of list iterator
54e6180c8c gpio: Request interrupts after IRQ is initialized
0837ff17d0 openvswitch: fix OOB access in reserve_sfa_size()
19f6dcb1f0 xtensa: fix a7 clobbering in coprocessor context load/store
f399ab11dd xtensa: patch_text: Fixup last cpu should be master
ba2716da23 net: atlantic: invert deep par in pm functions, preventing null derefs
358a3846f6 dma: at_xdmac: fix a missing check on list iterator
cf23a960c5 ata: pata_marvell: Check the 'bmdma_addr' beforing reading
9ca66d7914 mm/mmu_notifier.c: fix race in mmu_interval_notifier_remove()
ed5d4efb4d oom_kill.c: futex: delay the OOM reaper to allow time for proper futex cleanup
6b932920b9 mm, hugetlb: allow for "high" userspace addresses
50cbc583fa EDAC/synopsys: Read the error count from the correct register
7ec6e06ee4 nvme-pci: disable namespace identifiers for Qemu controllers
316bd86c22 nvme: add a quirk to disable namespace identifiers
76101c8e0c stat: fix inconsistency between struct stat and struct compat_stat
bf28bba304 scsi: qedi: Fix failed disconnect handling
a284cca3d8 net: macb: Restart tx only if queue pointer is lagging
9581e07b54 drm/msm/mdp5: check the return of kzalloc()
8d71edabb0 dpaa_eth: Fix missing of_node_put in dpaa_get_ts_info()
b3afe5a7fd brcmfmac: sdio: Fix undefined behavior due to shift overflowing the constant
202748f441 mt76: Fix undefined behavior due to shift overflowing the constant
0de9c104d0 net: atlantic: Avoid out-of-bounds indexing
5bef9fc38f cifs: Check the IOCB_DIRECT flag, not O_DIRECT
e129c55153 vxlan: fix error return code in vxlan_fdb_append
8e7ea11364 arm64: dts: imx: Fix imx8*-var-som touchscreen property sizes
cd227ac03f ALSA: usb-audio: Fix undefined behavior due to shift overflowing the constant
490815f0b5 platform/x86: samsung-laptop: Fix an unsigned comparison which can never be negative
cb17b56a9b reset: tegra-bpmp: Restore Handle errors in BPMP response
d513ea9b7e ARM: vexpress/spc: Avoid negative array index when !SMP
052e4a661f arm64: mm: fix p?d_leaf()
18ff7a2efa arm64/mm: Remove [PUD|PMD]_TABLE_BIT from [pud|pmd]_bad()
3bf8ca3501 selftests: mlxsw: vxlan_flooding: Prevent flooding of unwanted packets
520aab8b72 dmaengine: idxd: add RO check for wq max_transfer_size write
9a3c026dc3 dmaengine: idxd: add RO check for wq max_batch_size write
f593f49fcd net: stmmac: Use readl_poll_timeout_atomic() in atomic state
3d55b19574 netlink: reset network and mac headers in netlink_dump()
49516e6ed9 ipv6: make ip6_rt_gc_expire an atomic_t
078d839f11 l3mdev: l3mdev_master_upper_ifindex_by_index_rcu should be using netdev_master_upper_dev_get_rcu
0ac8f83d8f net/sched: cls_u32: fix possible leak in u32_init_knode()
93366275be ip6_gre: Fix skb_under_panic in __gre6_xmit()
200f96ebb3 ip6_gre: Avoid updating tunnel->tun_hlen in __gre6_xmit()
8fb76adb89 net/packet: fix packet_sock xmit return value checking
a499cb5f3e net/smc: Fix sock leak when release after smc_shutdown()
60592f16a4 rxrpc: Restore removed timer deletion
fc7116a79a igc: Fix BUG: scheduling while atomic
46b0e4f998 igc: Fix infinite loop in release_swfw_sync
c075c3ea03 esp: limit skb_page_frag_refill use to a single page
3f7914dbea spi: spi-mtk-nor: initialize spi controller after resume
f714abf28f dmaengine: mediatek:Fix PM usage reference leak of mtk_uart_apdma_alloc_chan_resources
9bc949a181 dmaengine: imx-sdma: Fix error checking in sdma_event_remap
12aa8021c7 ASoC: codecs: wcd934x: do not switch off SIDO Buck when codec is in use
b6f474cd30 ASoC: msm8916-wcd-digital: Check failure for devm_snd_soc_register_component
608fc58858 ASoC: atmel: Remove system clock tree configuration for at91sam9g20ek
d29c78d3f9 dm: fix mempool NULL pointer race when completing IO
cf9b195464 ALSA: hda/realtek: Add quirk for Clevo NP70PNP
8ce3820fc9 ALSA: usb-audio: Clear MIDI port active flag after draining
43ce33a68e net/sched: cls_u32: fix netns refcount changes in u32_change()
04dd45d977 gfs2: assign rgrp glock before compute_bitstructs
378061c9b8 perf tools: Fix segfault accessing sample_id xyarray
5e8446e382 tracing: Dump stacktrace trigger to the corresponding instance
69848f9488 mm: page_alloc: fix building error on -Werror=array-compare
08ad7a770e etherdevice: Adjust ether_addr* prototypes to silence -Wstringop-overead
904c5c08bb ANDROID: fix up gpio change in 5.10.111
5dadf6321c Merge 5.10.111 into android12-5.10-lts
1052f9bce6 Linux 5.10.112
5c62d3bf14 ax25: Fix UAF bugs in ax25 timers
f934fa478d ax25: Fix NULL pointer dereferences in ax25 timers
145ea8d213 ax25: fix NPD bug in ax25_disconnect
a4942c6fea ax25: fix UAF bug in ax25_send_control()
b20a5ab0f5 ax25: Fix refcount leaks caused by ax25_cb_del()
57cc15f5fd ax25: fix UAF bugs of net_device caused by rebinding operation
5ddae8d064 ax25: fix reference count leaks of ax25_dev
5ea00fc606 ax25: add refcount in ax25_dev to avoid UAF bugs
361288633b scsi: iscsi: Fix unbound endpoint error handling
129db30599 scsi: iscsi: Fix endpoint reuse regression
26f827e095 dma-direct: avoid redundant memory sync for swiotlb
9a5a4d23e2 timers: Fix warning condition in __run_timers()
84837f43e5 i2c: pasemi: Wait for write xfers to finish
89496d80bf smp: Fix offline cpu check in flush_smp_call_function_queue()
cd02b2687d dm integrity: fix memory corruption when tag_size is less than digest size
0a312ec66a ARM: davinci: da850-evm: Avoid NULL pointer dereference
0806f19305 tick/nohz: Use WARN_ON_ONCE() to prevent console saturation
0275c75955 genirq/affinity: Consider that CPUs on nodes can be unbalanced
1fcfe37d17 drm/amdgpu: Enable gfxoff quirk on MacBook Pro
68ae52efa1 drm/amd/display: don't ignore alpha property on pre-multiplied mode
a263712ba8 ipv6: fix panic when forwarding a pkt with no in6 dev
659214603b nl80211: correctly check NL80211_ATTR_REG_ALPHA2 size
912797e54c ALSA: pcm: Test for "silence" field in struct "pcm_format_data"
48d070ca5e ALSA: hda/realtek: add quirk for Lenovo Thinkpad X12 speakers
163e162471 ALSA: hda/realtek: Add quirk for Clevo PD50PNT
5e4dd17998 btrfs: mark resumed async balance as writing
1d2eda18f6 btrfs: fix root ref counts in error handling in btrfs_get_root_ref
9b7ec35253 ath9k: Fix usage of driver-private space in tx_info
0f65cedae5 ath9k: Properly clear TX status area before reporting to mac80211
cc21ae9326 gcc-plugins: latent_entropy: use /dev/urandom
c089ffc846 memory: renesas-rpc-if: fix platform-device leak in error path
342454231e KVM: x86/mmu: Resolve nx_huge_pages when kvm.ko is loaded
06c348fde5 mm: kmemleak: take a full lowmem check in kmemleak_*_phys()
20ed94f818 mm: fix unexpected zeroed page mapping with zram swap
192e507ef8 mm, page_alloc: fix build_zonerefs_node()
000b3921b4 perf/imx_ddr: Fix undefined behavior due to shift overflowing the constant
ca24c5e8f0 drivers: net: slip: fix NPD bug in sl_tx_timeout()
e8cf1e4d95 scsi: megaraid_sas: Target with invalid LUN ID is deleted during scan
5b7ce74b6b scsi: mvsas: Add PCI ID of RocketRaid 2640
4b44cd5840 drm/amd/display: Fix allocate_mst_payload assert on resume
34ea097fb6 drm/amd/display: Revert FEC check in validation
fa5ee7c423 myri10ge: fix an incorrect free for skb in myri10ge_sw_tso
d90df6da50 net: usb: aqc111: Fix out-of-bounds accesses in RX fixup
9c12fcf1d8 net: axienet: setup mdio unconditionally
b643807a73 tlb: hugetlb: Add more sizes to tlb_remove_huge_tlb_entry
98973d2bdd arm64: alternatives: mark patch_alternative() as `noinstr`
2462faffbf regulator: wm8994: Add an off-on delay for WM8994 variant
aa8cdedaf7 gpu: ipu-v3: Fix dev_dbg frequency output
150fe861c5 ata: libata-core: Disable READ LOG DMA EXT for Samsung 840 EVOs
1ff5359afa net: micrel: fix KS8851_MLL Kconfig
d3478709ed scsi: ibmvscsis: Increase INITIAL_SRP_LIMIT to 1024
b9a110fa75 scsi: lpfc: Fix queue failures when recovering from PCI parity error
aec36b98a1 scsi: target: tcmu: Fix possible page UAF
4366679805 Drivers: hv: vmbus: Prevent load re-ordering when reading ring buffer
1d7a5aae88 drm/amdkfd: Check for potential null return of kmalloc_array()
e5afacc826 drm/amdgpu/vcn: improve vcn dpg stop procedure
d2e0931e6d drm/amdkfd: Fix Incorrect VMIDs passed to HWS
7fc0610ad8 drm/amd/display: Update VTEM Infopacket definition
6906e05cf3 drm/amd/display: FEC check in timing validation
756c61c168 drm/amd/display: fix audio format not updated after edid updated
76e086ce7b btrfs: do not warn for free space inode in cow_file_range
217190dc66 btrfs: fix fallocate to use file_modified to update permissions consistently
9b5d1b3413 drm/amd: Add USBC connector ID
6f9c06501d net: bcmgenet: Revert "Use stronger register read/writes to assure ordering"
504c15f07f dm mpath: only use ktime_get_ns() in historical selector
4e166a4118 cifs: potential buffer overflow in handling symlinks
67677050ce nfc: nci: add flush_workqueue to prevent uaf
bfba9722cf perf tools: Fix misleading add event PMU debug message
280f721edc testing/selftests/mqueue: Fix mq_perf_tests to free the allocated cpu set
eb8873b324 sctp: Initialize daddr on peeled off socket
45226fac4d scsi: iscsi: Fix conn cleanup and stop race during iscsid restart
73805795c9 scsi: iscsi: Fix offload conn cleanup when iscsid restarts
699bd835c3 scsi: iscsi: Move iscsi_ep_disconnect()
46f37a34a5 scsi: iscsi: Fix in-kernel conn failure handling
8125738967 scsi: iscsi: Rel ref after iscsi_lookup_endpoint()
22608545b8 scsi: iscsi: Use system_unbound_wq for destroy_work
4029a1e992 scsi: iscsi: Force immediate failure during shutdown
17d14456f6 scsi: iscsi: Stop queueing during ep_disconnect
da9cf24aa7 scsi: pm80xx: Enable upper inbound, outbound queues
e08d269712 scsi: pm80xx: Mask and unmask upper interrupt vectors 32-63
35b91e49bc net/smc: Fix NULL pointer dereference in smc_pnet_find_ib()
98a7f6c4ad drm/msm/dsi: Use connector directly in msm_dsi_manager_connector_init()
5f78ad9383 drm/msm: Fix range size vs end confusion
5513f9a0b0 cfg80211: hold bss_lock while updating nontrans_list
a44938950e net/sched: taprio: Check if socket flags are valid
08d5e3e954 net: ethernet: stmmac: fix altr_tse_pcs function when using a fixed-link
2ad9d890d8 net: dsa: felix: suppress -EPROBE_DEFER errors
f2cc341fcc net/sched: fix initialization order when updating chain 0 head
7a7cf84148 mlxsw: i2c: Fix initialization error flow
43e58e119a net: mdio: Alphabetically sort header inclusion
9709c8b5cd gpiolib: acpi: use correct format characters
d67c900f19 veth: Ensure eth header is in skb's linear part
845f44ce3d net/sched: flower: fix parsing of ethertype following VLAN header
85ee17ca21 SUNRPC: Fix the svc_deferred_event trace class
af12dd7123 media: rockchip/rga: do proper error checking in probe
5637129712 firmware: arm_scmi: Fix sorting of retrieved clock rates
16c628b0c6 memory: atmel-ebi: Fix missing of_node_put in atmel_ebi_probe
cb66641f81 drm/msm: Add missing put_task_struct() in debugfs path
921fdc45a0 btrfs: remove unused variable in btrfs_{start,write}_dirty_block_groups()
5d131318bb ACPI: processor idle: Check for architectural support for LPI
503934df31 cpuidle: PSCI: Move the `has_lpi` check to the beginning of the function
cfa98ffc42 hamradio: remove needs_free_netdev to avoid UAF
80a4df1464 hamradio: defer 6pack kfree after unregister_netdev
f0c31f192f drm/amdkfd: Use drm_priv to pass VM from KFD to amdgpu
6c8e5cb264 Linux 5.10.111
d36febbcd5 powerpc: Fix virt_addr_valid() for 64-bit Book3E & 32-bit
5c672073bc mm/sparsemem: fix 'mem_section' will never be NULL gcc 12 warning
5973f7507a irqchip/gic, gic-v3: Prevent GSI to SGI translations
000e09462f Drivers: hv: vmbus: Replace smp_store_mb() with virt_store_mb()
e1f540b752 arm64: module: remove (NOLOAD) from linker script
919823bd67 selftests: cgroup: Test open-time cgroup namespace usage for migration checks
637eca44b8 selftests: cgroup: Test open-time credential usage for migration checks
9dd39d2c65 selftests: cgroup: Make cg_create() use 0755 for permission instead of 0644
e74da71e66 selftests/cgroup: Fix build on older distros
4665722d36 cgroup: Use open-time credentials for process migraton perm checks
f089471d1b mm: don't skip swap entry even if zap_details specified
58823a9b09 ubsan: remove CONFIG_UBSAN_OBJECT_SIZE
03b39bbbec dmaengine: Revert "dmaengine: shdma: Fix runtime PM imbalance on error"
40e00885a6 tools build: Use $(shell ) instead of `` to get embedded libperl's ccopts
75c8558d41 tools build: Filter out options and warnings not supported by clang
6374faf49e perf python: Fix probing for some clang command line options
79abc219ba perf build: Don't use -ffat-lto-objects in the python feature test when building with clang-13
82e4395014 drm/amdkfd: Create file descriptor after client is added to smi_clients list
326b408e7e drm/nouveau/pmu: Add missing callbacks for Tegra devices
786ae8de3a drm/amdgpu/smu10: fix SoC/fclk units in auto mode
ff24114bb0 irqchip/gic-v3: Fix GICR_CTLR.RWP polling
451214b266 perf: qcom_l2_pmu: fix an incorrect NULL check on list iterator
fc629224aa ata: sata_dwc_460ex: Fix crash due to OOB write
7e88a50704 gpio: Restrict usage of GPIO chip irq members before initialization
5f54364ff6 RDMA/hfi1: Fix use-after-free bug for mm struct
8bb4168291 arm64: patch_text: Fixup last cpu should be master
a044bca8ef btrfs: prevent subvol with swapfile from being deleted
82ae73ac96 btrfs: fix qgroup reserve overflow the qgroup limit
fc4bdaed4d x86/speculation: Restore speculation related MSRs during S3 resume
8c9e26c890 x86/pm: Save the MSR validity status at context setup
2827328e64 io_uring: fix race between timeout flush and removal
f7e183b0a7 mm/mempolicy: fix mpol_new leak in shared_policy_replace
7d659cb176 mmmremap.c: avoid pointless invalidate_range_start/end on mremap(old_size=0)
6adc01a7aa lz4: fix LZ4_decompress_safe_partial read out of bound
8b6f04b4c9 mmc: renesas_sdhi: don't overwrite TAP settings when HS400 tuning is complete
029b417073 mmc: mmci: stm32: correctly check all elements of sg list
41a519c05b Revert "mmc: sdhci-xenon: fix annoying 1.8V regulator warning"
9de98470db arm64: Add part number for Arm Cortex-A78AE
4604b5738d perf session: Remap buf if there is no space for event
362ced3769 perf tools: Fix perf's libperf_print callback
65210fac63 perf: arm-spe: Fix perf report --mem-mode
bd905fed87 iommu/omap: Fix regression in probe for NULL pointer dereference
b3c00be2ff SUNRPC: svc_tcp_sendmsg() should handle errors from xdr_alloc_bvec()
9a45e08636 SUNRPC: Handle low memory situations in call_status()
132cbe2f18 SUNRPC: Handle ENOMEM in call_transmit_status()
aed30a2054 io_uring: don't touch scm_fp_list after queueing skb
594205b493 drbd: Fix five use after free bugs in get_initial_state
970a6bb729 bpf: Support dual-stack sockets in bpf_tcp_check_syncookie
6c17f4ef3c spi: bcm-qspi: fix MSPI only access with bcm_qspi_exec_mem_op()
8928239e5e qede: confirm skb is allocated before using
b7893388bb net: phy: mscc-miim: reject clause 45 register accesses
08ff0e74fa rxrpc: fix a race in rxrpc_exit_net()
5ae05b5eb5 net: openvswitch: fix leak of nested actions
42ab401d22 net: openvswitch: don't send internal clone attribute to the userspace.
e54ea8fc51 ice: synchronize_rcu() when terminating rings
e3dd1202ab ipv6: Fix stats accounting in ip6_pkt_drop
ffce126c95 ice: Do not skip not enabled queues in ice_vc_dis_qs_msg
b003fc4913 ice: Set txq_teid to ICE_INVAL_TEID on ring creation
ebd1e3458d dpaa2-ptp: Fix refcount leak in dpaa2_ptp_probe
43c2d7890e IB/rdmavt: add lock to call to rvt_error_qp to prevent a race condition
3a57babfb6 RDMA/mlx5: Don't remove cache MRs when a delay is needed
d8992b393f sfc: Do not free an empty page_ring
0ac74169eb bnxt_en: reserve space inside receive page for skb_shared_info
f8b0ef0a58 drm/imx: Fix memory leak in imx_pd_connector_get_modes
25bc9fd4c8 drm/imx: imx-ldb: Check for null pointer after calling kmemdup
02ab4abe5b net: stmmac: Fix unset max_speed difference between DT and non-DT platforms
63ea57478a net: ipv4: fix route with nexthop object delete warning
4be6ed0310 ice: Clear default forwarding VSI during VSI release
589154d0f1 net/tls: fix slab-out-of-bounds bug in decrypt_internal
c5f77b5953 scsi: zorro7xx: Fix a resource leak in zorro7xx_remove_one()
45b9932b4d NFSv4: fix open failure with O_ACCMODE flag
c688705a39 Revert "NFSv4: Handle the special Linux file open access mode"
cf580d2e38 Drivers: hv: vmbus: Fix potential crash on module unload
0c122eb3a1 drm/amdgpu: fix off by one in amdgpu_gfx_kiq_acquire()
84e5dfc05f Revert "hv: utils: add PTP_1588_CLOCK to Kconfig to fix build"
3c3fbfa6dd mm: fix race between MADV_FREE reclaim and blkdev direct IO read
1753a49e26 parisc: Fix patch code locking and flushing
f7c3522030 parisc: Fix CPU affinity for Lasi, WAX and Dino chips
c74e2f6ecc NFS: Avoid writeback threads getting stuck in mempool_alloc()
34681aeddc NFS: nfsiod should not block forever in mempool_alloc()
7a506fabcf SUNRPC: Fix socket waits for write buffer space
b9c5ac0a15 jfs: prevent NULL deref in diFree
c69b442125 virtio_console: eliminate anonymous module_init & module_exit
3309b32217 serial: samsung_tty: do not unlock port->lock for uart_write_wakeup()
9cb90f9ad5 x86/Kconfig: Do not allow CONFIG_X86_X32_ABI=y with llvm-objcopy
b3882e78aa NFS: swap-out must always use STABLE writes.
d4170a2821 NFS: swap IO handling is slightly different for O_DIRECT IO
4b6f122bdf SUNRPC: remove scheduling boost for "SWAPPER" tasks.
f4fc47e71e SUNRPC/xprt: async tasks mustn't block waiting for memory
f9244d31e0 SUNRPC/call_alloc: async tasks mustn't block waiting for memory
e2b2542f74 clk: Enforce that disjoints limits are invalid
1e9b5538cf clk: ti: Preserve node in ti_dt_clocks_register()
a2a0e04f64 xen: delay xen_hvm_init_time_ops() if kdump is boot on vcpu>=32
4a2544ce24 NFSv4: Protect the state recovery thread against direct reclaim
9b9feec97c NFSv4.2: fix reference count leaks in _nfs42_proc_copy_notify()
2e16895d06 w1: w1_therm: fixes w1_seq for ds28ea00 sensors
93498c6e77 staging: wfx: fix an error handling in wfx_init_common()
8f1d24f85f phy: amlogic: meson8b-usb2: Use dev_err_probe()
aa0b729678 staging: vchiq_core: handle NULL result of find_service_by_handle
be4ecca958 clk: si5341: fix reported clk_rate when output divider is 2
c9cf6baabf minix: fix bug when opening a file with O_DIRECT
8d9efd4434 init/main.c: return 1 from handled __setup() functions
f442978612 ceph: fix memory leak in ceph_readdir when note_last_dentry returns error
d745512d54 netlabel: fix out-of-bounds memory accesses
2cc803804e Bluetooth: Fix use after free in hci_send_acl
789621df19 MIPS: ingenic: correct unit node address
61e25021e6 xtensa: fix DTC warning unit_address_format
f6b9550f53 usb: dwc3: omap: fix "unbalanced disables for smps10_out1" on omap5evm
a4dd3e9e5a net: sfp: add 2500base-X quirk for Lantech SFP module
278b652f0a net: limit altnames to 64k total
423e7107f6 net: account alternate interface name memory
74c4d50255 can: isotp: set default value for N_As to 50 micro seconds
1d7effe5ff scsi: libfc: Fix use after free in fc_exch_abts_resp()
02222bf4f0 powerpc/secvar: fix refcount leak in format_show()
fd416c3f5a MIPS: fix fortify panic when copying asm exception handlers
7c657c0694 PCI: endpoint: Fix misused goto label
79cfc0052f bnxt_en: Eliminate unintended link toggle during FW reset
9567d54e70 Bluetooth: use memset avoid memory leaks
f9b183f133 Bluetooth: Fix not checking for valid hdev on bt_dev_{info,warn,err,dbg}
647b35aaf4 tuntap: add sanity checks about msg_controllen in sendmsg
797b4ea951 macvtap: advertise link netns via netlink
142ae7d4f2 mips: ralink: fix a refcount leak in ill_acc_of_setup()
f2565cb40e net/smc: correct settings of RMB window update limit
224903cc60 scsi: hisi_sas: Free irq vectors in order for v3 HW
f49ffaa85d scsi: aha152x: Fix aha152x_setup() __setup handler return value
91ee8a14ef mt76: mt7615: Fix assigning negative values to unsigned variable
d83574666b scsi: pm8001: Fix memory leak in pm8001_chip_fw_flash_update_req()
a0bb65eadb scsi: pm8001: Fix tag leaks on error
2051044d79 scsi: pm8001: Fix task leak in pm8001_send_abort_all()
3bd9a28798 scsi: pm8001: Fix pm8001_mpi_task_abort_resp()
ef969095c4 scsi: pm8001: Fix pm80xx_pci_mem_copy() interface
fe4b6d5a0d drm/amdkfd: make CRAT table missing message informational only
2f2f017ea8 dm: requeue IO if mapping table not yet available
71c8df33fd dm ioctl: prevent potential spectre v1 gadget
f655b724b4 ipv4: Invalidate neighbour for broadcast address upon address addition
bae03957e8 iwlwifi: mvm: Correctly set fragmented EBS
9538563d31 power: supply: axp288-charger: Set Vhold to 4.4V
c66cc04043 PCI: pciehp: Add Qualcomm quirk for Command Completed erratum
b1b27b0e8d tcp: Don't acquire inet_listen_hashbucket::lock with disabled BH.
b02a1a6502 PCI: endpoint: Fix alignment fault error in copy tests
4820847e8b usb: ehci: add pci device support for Aspeed platforms
0b9cf0b599 iommu/arm-smmu-v3: fix event handling soft lockup
e07e420a00 PCI: aardvark: Fix support for MSI interrupts
6694b8643b drm/amdgpu: Fix recursive locking warning
ea21eaea7f powerpc: Set crashkernel offset to mid of RMA region
fb5ac62fbe ipv6: make mc_forwarding atomic
5baf92a2c4 libbpf: Fix build issue with llvm-readelf
26a1e4739e cfg80211: don't add non transmitted BSS to 6GHz scanned channels
9a56e2b271 mt76: dma: initialize skip_unmap in mt76_dma_rx_fill
b42b6d0ec3 power: supply: axp20x_battery: properly report current when discharging
de9505936c scsi: bfa: Replace snprintf() with sysfs_emit()
ed7db95920 scsi: mvsas: Replace snprintf() with sysfs_emit()
995f517888 bpf: Make dst_port field in struct bpf_sock 16-bit wide
339bd0b55e ath11k: mhi: use mhi_sync_power_up()
c6a815f5ab ath11k: fix kernel panic during unload/load ath11k modules
e4d2d72013 powerpc: dts: t104xrdb: fix phy type for FMAN 4/5
02e2ee8619 ptp: replace snprintf with sysfs_emit
9ea17b9f1d usb: gadget: tegra-xudc: Fix control endpoint's definitions
07971b818e usb: gadget: tegra-xudc: Do not program SPARAM
927beb05aa drm/amd/amdgpu/amdgpu_cs: fix refcount leak of a dma_fence obj
85313d9bc7 drm/amd/display: Add signal type check when verify stream backends same
9d7d83d039 ath5k: fix OOB in ath5k_eeprom_read_pcal_info_5111
850c4351e8 drm: Add orientation quirk for GPD Win Max
a24479c5e9 KVM: x86/emulator: Emulate RDPID only if it is enabled in guest
66b0fa6b22 KVM: x86/svm: Clear reserved bits written to PerfEvtSeln MSRs
2e52a29470 rtc: wm8350: Handle error for wm8350_register_irq
0777fe98a4 gfs2: gfs2_setattr_size error path fix
f349d7f9ee gfs2: Fix gfs2_release for non-writers regression
3f53715fd5 gfs2: Check for active reservation in gfs2_release
2dc49f58a2 ubifs: Rectify space amount budget for mkdir/tmpfile operations

Update the .xml file with the following needed changes that came in from
the -lts branch to handle ABI issues with LTS security fixes:

Leaf changes summary: 3 artifacts changed
Changed leaf types summary: 2 leaf types changed
Removed/Changed/Added functions summary: 0 Removed, 1 Changed, 0 Added function
Removed/Changed/Added variables summary: 0 Removed, 0 Changed, 0 Added variable

1 function with some sub-type change:

  [C] 'function int hex_to_bin(char)' at hexdump.c:53:1 has some sub-type changes:
    parameter 1 of type 'char' changed:
      type name changed from 'char' to 'unsigned char'
      type size hasn't changed

'struct gpio_chip at driver.h:362:1' changed (indirectly):
  type size hasn't changed
  there are data member changes:
    type 'struct gpio_irq_chip' of 'gpio_chip::irq' changed:
      type size hasn't changed
      there are data member changes:
        data member u64 android_kabi_reserved1 at offset 2304 (in bits) became anonymous data member 'union {bool initialized; struct {u64 android_kabi_reserved1;}; union {};}'
      1265 impacted interfaces
  1265 impacted interfaces

'struct gpio_irq_chip at driver.h:32:1' changed:
  details were reported earlier

Change-Id: Iface7385c5d82fbcdaeb92fda79ac3cd1835d323
Signed-off-by: Greg Kroah-Hartman <gregkh@google.com>
2022-07-27 11:21:05 +02:00

3105 lines
81 KiB
C

// SPDX-License-Identifier: GPL-2.0
/*
* Memory Migration functionality - linux/mm/migrate.c
*
* Copyright (C) 2006 Silicon Graphics, Inc., Christoph Lameter
*
* Page migration was first developed in the context of the memory hotplug
* project. The main authors of the migration code are:
*
* IWAMOTO Toshihiro <iwamoto@valinux.co.jp>
* Hirokazu Takahashi <taka@valinux.co.jp>
* Dave Hansen <haveblue@us.ibm.com>
* Christoph Lameter
*/
#include <linux/migrate.h>
#include <linux/export.h>
#include <linux/swap.h>
#include <linux/swapops.h>
#include <linux/pagemap.h>
#include <linux/buffer_head.h>
#include <linux/mm_inline.h>
#include <linux/nsproxy.h>
#include <linux/pagevec.h>
#include <linux/ksm.h>
#include <linux/rmap.h>
#include <linux/topology.h>
#include <linux/cpu.h>
#include <linux/cpuset.h>
#include <linux/writeback.h>
#include <linux/mempolicy.h>
#include <linux/vmalloc.h>
#include <linux/security.h>
#include <linux/backing-dev.h>
#include <linux/compaction.h>
#include <linux/syscalls.h>
#include <linux/compat.h>
#include <linux/hugetlb.h>
#include <linux/hugetlb_cgroup.h>
#include <linux/gfp.h>
#include <linux/pagewalk.h>
#include <linux/pfn_t.h>
#include <linux/memremap.h>
#include <linux/userfaultfd_k.h>
#include <linux/balloon_compaction.h>
#include <linux/mmu_notifier.h>
#include <linux/page_idle.h>
#include <linux/page_owner.h>
#include <linux/sched/mm.h>
#include <linux/ptrace.h>
#include <linux/oom.h>
#include <asm/tlbflush.h>
#define CREATE_TRACE_POINTS
#include <trace/events/migrate.h>
#undef CREATE_TRACE_POINTS
#include <trace/hooks/mm.h>
#include "internal.h"
int isolate_movable_page(struct page *page, isolate_mode_t mode)
{
struct address_space *mapping;
/*
* Avoid burning cycles with pages that are yet under __free_pages(),
* or just got freed under us.
*
* In case we 'win' a race for a movable page being freed under us and
* raise its refcount preventing __free_pages() from doing its job
* the put_page() at the end of this block will take care of
* release this page, thus avoiding a nasty leakage.
*/
if (unlikely(!get_page_unless_zero(page)))
goto out;
/*
* Check PageMovable before holding a PG_lock because page's owner
* assumes anybody doesn't touch PG_lock of newly allocated page
* so unconditionally grabbing the lock ruins page's owner side.
*/
if (unlikely(!__PageMovable(page)))
goto out_putpage;
/*
* As movable pages are not isolated from LRU lists, concurrent
* compaction threads can race against page migration functions
* as well as race against the releasing a page.
*
* In order to avoid having an already isolated movable page
* being (wrongly) re-isolated while it is under migration,
* or to avoid attempting to isolate pages being released,
* lets be sure we have the page lock
* before proceeding with the movable page isolation steps.
*/
if (unlikely(!trylock_page(page)))
goto out_putpage;
if (!PageMovable(page) || PageIsolated(page))
goto out_no_isolated;
mapping = page_mapping(page);
VM_BUG_ON_PAGE(!mapping, page);
if (!mapping->a_ops->isolate_page(page, mode))
goto out_no_isolated;
/* Driver shouldn't use PG_isolated bit of page->flags */
WARN_ON_ONCE(PageIsolated(page));
SetPageIsolated(page);
unlock_page(page);
return 0;
out_no_isolated:
unlock_page(page);
out_putpage:
put_page(page);
out:
return -EBUSY;
}
/* It should be called on page which is PG_movable */
void putback_movable_page(struct page *page)
{
struct address_space *mapping;
VM_BUG_ON_PAGE(!PageLocked(page), page);
VM_BUG_ON_PAGE(!PageMovable(page), page);
VM_BUG_ON_PAGE(!PageIsolated(page), page);
mapping = page_mapping(page);
mapping->a_ops->putback_page(page);
ClearPageIsolated(page);
}
/*
* Put previously isolated pages back onto the appropriate lists
* from where they were once taken off for compaction/migration.
*
* This function shall be used whenever the isolated pageset has been
* built from lru, balloon, hugetlbfs page. See isolate_migratepages_range()
* and isolate_huge_page().
*/
void putback_movable_pages(struct list_head *l)
{
struct page *page;
struct page *page2;
list_for_each_entry_safe(page, page2, l, lru) {
if (unlikely(PageHuge(page))) {
putback_active_hugepage(page);
continue;
}
list_del(&page->lru);
/*
* We isolated non-lru movable page so here we can use
* __PageMovable because LRU page's mapping cannot have
* PAGE_MAPPING_MOVABLE.
*/
if (unlikely(__PageMovable(page))) {
VM_BUG_ON_PAGE(!PageIsolated(page), page);
lock_page(page);
if (PageMovable(page))
putback_movable_page(page);
else
ClearPageIsolated(page);
unlock_page(page);
put_page(page);
} else {
mod_node_page_state(page_pgdat(page), NR_ISOLATED_ANON +
page_is_file_lru(page), -thp_nr_pages(page));
putback_lru_page(page);
}
}
}
EXPORT_SYMBOL_GPL(putback_movable_pages);
/*
* Restore a potential migration pte to a working pte entry
*/
static bool remove_migration_pte(struct page *page, struct vm_area_struct *vma,
unsigned long addr, void *old)
{
struct page_vma_mapped_walk pvmw = {
.page = old,
.vma = vma,
.address = addr,
.flags = PVMW_SYNC | PVMW_MIGRATION,
};
struct page *new;
pte_t pte;
swp_entry_t entry;
VM_BUG_ON_PAGE(PageTail(page), page);
while (page_vma_mapped_walk(&pvmw)) {
if (PageKsm(page))
new = page;
else
new = page - pvmw.page->index +
linear_page_index(vma, pvmw.address);
#ifdef CONFIG_ARCH_ENABLE_THP_MIGRATION
/* PMD-mapped THP migration entry */
if (!pvmw.pte) {
VM_BUG_ON_PAGE(PageHuge(page) || !PageTransCompound(page), page);
remove_migration_pmd(&pvmw, new);
continue;
}
#endif
get_page(new);
pte = pte_mkold(mk_pte(new, READ_ONCE(vma->vm_page_prot)));
if (pte_swp_soft_dirty(*pvmw.pte))
pte = pte_mksoft_dirty(pte);
/*
* Recheck VMA as permissions can change since migration started
*/
entry = pte_to_swp_entry(*pvmw.pte);
if (is_write_migration_entry(entry))
pte = maybe_mkwrite(pte, vma->vm_flags);
else if (pte_swp_uffd_wp(*pvmw.pte))
pte = pte_mkuffd_wp(pte);
if (unlikely(is_device_private_page(new))) {
entry = make_device_private_entry(new, pte_write(pte));
pte = swp_entry_to_pte(entry);
if (pte_swp_soft_dirty(*pvmw.pte))
pte = pte_swp_mksoft_dirty(pte);
if (pte_swp_uffd_wp(*pvmw.pte))
pte = pte_swp_mkuffd_wp(pte);
}
#ifdef CONFIG_HUGETLB_PAGE
if (PageHuge(new)) {
pte = pte_mkhuge(pte);
pte = arch_make_huge_pte(pte, vma, new, 0);
set_huge_pte_at(vma->vm_mm, pvmw.address, pvmw.pte, pte);
if (PageAnon(new))
hugepage_add_anon_rmap(new, vma, pvmw.address);
else
page_dup_rmap(new, true);
} else
#endif
{
set_pte_at(vma->vm_mm, pvmw.address, pvmw.pte, pte);
if (PageAnon(new))
page_add_anon_rmap(new, vma, pvmw.address, false);
else
page_add_file_rmap(new, false);
}
if (vma->vm_flags & VM_LOCKED && !PageTransCompound(new))
mlock_vma_page(new);
if (PageTransHuge(page) && PageMlocked(page))
clear_page_mlock(page);
/* No need to invalidate - it was non-present before */
update_mmu_cache(vma, pvmw.address, pvmw.pte);
}
return true;
}
/*
* Get rid of all migration entries and replace them by
* references to the indicated page.
*/
void remove_migration_ptes(struct page *old, struct page *new, bool locked)
{
struct rmap_walk_control rwc = {
.rmap_one = remove_migration_pte,
.arg = old,
};
if (locked)
rmap_walk_locked(new, &rwc);
else
rmap_walk(new, &rwc);
}
/*
* Something used the pte of a page under migration. We need to
* get to the page and wait until migration is finished.
* When we return from this function the fault will be retried.
*/
void __migration_entry_wait(struct mm_struct *mm, pte_t *ptep,
spinlock_t *ptl)
{
pte_t pte;
swp_entry_t entry;
struct page *page;
spin_lock(ptl);
pte = *ptep;
if (!is_swap_pte(pte))
goto out;
entry = pte_to_swp_entry(pte);
if (!is_migration_entry(entry))
goto out;
page = migration_entry_to_page(entry);
page = compound_head(page);
/*
* Once page cache replacement of page migration started, page_count
* is zero; but we must not call put_and_wait_on_page_locked() without
* a ref. Use get_page_unless_zero(), and just fault again if it fails.
*/
if (!get_page_unless_zero(page))
goto out;
pte_unmap_unlock(ptep, ptl);
trace_android_vh_waiting_for_page_migration(page);
put_and_wait_on_page_locked(page);
return;
out:
pte_unmap_unlock(ptep, ptl);
}
void migration_entry_wait(struct mm_struct *mm, pmd_t *pmd,
unsigned long address)
{
spinlock_t *ptl = pte_lockptr(mm, pmd);
pte_t *ptep = pte_offset_map(pmd, address);
__migration_entry_wait(mm, ptep, ptl);
}
void migration_entry_wait_huge(struct vm_area_struct *vma,
struct mm_struct *mm, pte_t *pte)
{
spinlock_t *ptl = huge_pte_lockptr(hstate_vma(vma), mm, pte);
__migration_entry_wait(mm, pte, ptl);
}
#ifdef CONFIG_ARCH_ENABLE_THP_MIGRATION
void pmd_migration_entry_wait(struct mm_struct *mm, pmd_t *pmd)
{
spinlock_t *ptl;
struct page *page;
ptl = pmd_lock(mm, pmd);
if (!is_pmd_migration_entry(*pmd))
goto unlock;
page = migration_entry_to_page(pmd_to_swp_entry(*pmd));
if (!get_page_unless_zero(page))
goto unlock;
spin_unlock(ptl);
put_and_wait_on_page_locked(page);
return;
unlock:
spin_unlock(ptl);
}
#endif
static int expected_page_refs(struct address_space *mapping, struct page *page)
{
int expected_count = 1;
/*
* Device private pages have an extra refcount as they are
* ZONE_DEVICE pages.
*/
expected_count += is_device_private_page(page);
if (mapping)
expected_count += thp_nr_pages(page) + page_has_private(page);
return expected_count;
}
/*
* Replace the page in the mapping.
*
* The number of remaining references must be:
* 1 for anonymous pages without a mapping
* 2 for pages with a mapping
* 3 for pages with a mapping and PagePrivate/PagePrivate2 set.
*/
int migrate_page_move_mapping(struct address_space *mapping,
struct page *newpage, struct page *page, int extra_count)
{
XA_STATE(xas, &mapping->i_pages, page_index(page));
struct zone *oldzone, *newzone;
int dirty;
int expected_count = expected_page_refs(mapping, page) + extra_count;
int nr = thp_nr_pages(page);
if (!mapping) {
/* Anonymous page without mapping */
if (page_count(page) != expected_count)
return -EAGAIN;
/* No turning back from here */
newpage->index = page->index;
newpage->mapping = page->mapping;
if (PageSwapBacked(page))
__SetPageSwapBacked(newpage);
return MIGRATEPAGE_SUCCESS;
}
oldzone = page_zone(page);
newzone = page_zone(newpage);
xas_lock_irq(&xas);
if (page_count(page) != expected_count || xas_load(&xas) != page) {
xas_unlock_irq(&xas);
return -EAGAIN;
}
if (!page_ref_freeze(page, expected_count)) {
xas_unlock_irq(&xas);
return -EAGAIN;
}
/*
* Now we know that no one else is looking at the page:
* no turning back from here.
*/
newpage->index = page->index;
newpage->mapping = page->mapping;
page_ref_add(newpage, nr); /* add cache reference */
if (PageSwapBacked(page)) {
__SetPageSwapBacked(newpage);
if (PageSwapCache(page)) {
SetPageSwapCache(newpage);
set_page_private(newpage, page_private(page));
}
} else {
VM_BUG_ON_PAGE(PageSwapCache(page), page);
}
/* Move dirty while page refs frozen and newpage not yet exposed */
dirty = PageDirty(page);
if (dirty) {
ClearPageDirty(page);
SetPageDirty(newpage);
}
xas_store(&xas, newpage);
if (PageTransHuge(page)) {
int i;
for (i = 1; i < nr; i++) {
xas_next(&xas);
xas_store(&xas, newpage);
}
}
/*
* Drop cache reference from old page by unfreezing
* to one less reference.
* We know this isn't the last reference.
*/
page_ref_unfreeze(page, expected_count - nr);
xas_unlock(&xas);
/* Leave irq disabled to prevent preemption while updating stats */
/*
* If moved to a different zone then also account
* the page for that zone. Other VM counters will be
* taken care of when we establish references to the
* new page and drop references to the old page.
*
* Note that anonymous pages are accounted for
* via NR_FILE_PAGES and NR_ANON_MAPPED if they
* are mapped to swap space.
*/
if (newzone != oldzone) {
struct lruvec *old_lruvec, *new_lruvec;
struct mem_cgroup *memcg;
memcg = page_memcg(page);
old_lruvec = mem_cgroup_lruvec(memcg, oldzone->zone_pgdat);
new_lruvec = mem_cgroup_lruvec(memcg, newzone->zone_pgdat);
__mod_lruvec_state(old_lruvec, NR_FILE_PAGES, -nr);
__mod_lruvec_state(new_lruvec, NR_FILE_PAGES, nr);
if (PageSwapBacked(page) && !PageSwapCache(page)) {
__mod_lruvec_state(old_lruvec, NR_SHMEM, -nr);
__mod_lruvec_state(new_lruvec, NR_SHMEM, nr);
}
if (dirty && mapping_can_writeback(mapping)) {
__mod_lruvec_state(old_lruvec, NR_FILE_DIRTY, -nr);
__mod_zone_page_state(oldzone, NR_ZONE_WRITE_PENDING, -nr);
__mod_lruvec_state(new_lruvec, NR_FILE_DIRTY, nr);
__mod_zone_page_state(newzone, NR_ZONE_WRITE_PENDING, nr);
}
}
local_irq_enable();
return MIGRATEPAGE_SUCCESS;
}
EXPORT_SYMBOL(migrate_page_move_mapping);
/*
* The expected number of remaining references is the same as that
* of migrate_page_move_mapping().
*/
int migrate_huge_page_move_mapping(struct address_space *mapping,
struct page *newpage, struct page *page)
{
XA_STATE(xas, &mapping->i_pages, page_index(page));
int expected_count;
xas_lock_irq(&xas);
expected_count = 2 + page_has_private(page);
if (page_count(page) != expected_count || xas_load(&xas) != page) {
xas_unlock_irq(&xas);
return -EAGAIN;
}
if (!page_ref_freeze(page, expected_count)) {
xas_unlock_irq(&xas);
return -EAGAIN;
}
newpage->index = page->index;
newpage->mapping = page->mapping;
get_page(newpage);
xas_store(&xas, newpage);
page_ref_unfreeze(page, expected_count - 1);
xas_unlock_irq(&xas);
return MIGRATEPAGE_SUCCESS;
}
/*
* Gigantic pages are so large that we do not guarantee that page++ pointer
* arithmetic will work across the entire page. We need something more
* specialized.
*/
static void __copy_gigantic_page(struct page *dst, struct page *src,
int nr_pages)
{
int i;
struct page *dst_base = dst;
struct page *src_base = src;
for (i = 0; i < nr_pages; ) {
cond_resched();
copy_highpage(dst, src);
i++;
dst = mem_map_next(dst, dst_base, i);
src = mem_map_next(src, src_base, i);
}
}
static void copy_huge_page(struct page *dst, struct page *src)
{
int i;
int nr_pages;
if (PageHuge(src)) {
/* hugetlbfs page */
struct hstate *h = page_hstate(src);
nr_pages = pages_per_huge_page(h);
if (unlikely(nr_pages > MAX_ORDER_NR_PAGES)) {
__copy_gigantic_page(dst, src, nr_pages);
return;
}
} else {
/* thp page */
BUG_ON(!PageTransHuge(src));
nr_pages = thp_nr_pages(src);
}
for (i = 0; i < nr_pages; i++) {
cond_resched();
copy_highpage(dst + i, src + i);
}
}
/*
* Copy the page to its new location
*/
void migrate_page_states(struct page *newpage, struct page *page)
{
int cpupid;
trace_android_vh_migrate_page_states(page, newpage);
if (PageError(page))
SetPageError(newpage);
if (PageReferenced(page))
SetPageReferenced(newpage);
if (PageUptodate(page))
SetPageUptodate(newpage);
if (TestClearPageActive(page)) {
VM_BUG_ON_PAGE(PageUnevictable(page), page);
SetPageActive(newpage);
} else if (TestClearPageUnevictable(page))
SetPageUnevictable(newpage);
if (PageWorkingset(page))
SetPageWorkingset(newpage);
if (PageChecked(page))
SetPageChecked(newpage);
if (PageMappedToDisk(page))
SetPageMappedToDisk(newpage);
/* Move dirty on pages not done by migrate_page_move_mapping() */
if (PageDirty(page))
SetPageDirty(newpage);
if (page_is_young(page))
set_page_young(newpage);
if (page_is_idle(page))
set_page_idle(newpage);
/*
* Copy NUMA information to the new page, to prevent over-eager
* future migrations of this same page.
*/
cpupid = page_cpupid_xchg_last(page, -1);
page_cpupid_xchg_last(newpage, cpupid);
ksm_migrate_page(newpage, page);
/*
* Please do not reorder this without considering how mm/ksm.c's
* get_ksm_page() depends upon ksm_migrate_page() and PageSwapCache().
*/
if (PageSwapCache(page))
ClearPageSwapCache(page);
ClearPagePrivate(page);
set_page_private(page, 0);
/*
* If any waiters have accumulated on the new page then
* wake them up.
*/
if (PageWriteback(newpage))
end_page_writeback(newpage);
/*
* PG_readahead shares the same bit with PG_reclaim. The above
* end_page_writeback() may clear PG_readahead mistakenly, so set the
* bit after that.
*/
if (PageReadahead(page))
SetPageReadahead(newpage);
copy_page_owner(page, newpage);
if (!PageHuge(page))
mem_cgroup_migrate(page, newpage);
}
EXPORT_SYMBOL(migrate_page_states);
void migrate_page_copy(struct page *newpage, struct page *page)
{
if (PageHuge(page) || PageTransHuge(page))
copy_huge_page(newpage, page);
else
copy_highpage(newpage, page);
migrate_page_states(newpage, page);
}
EXPORT_SYMBOL(migrate_page_copy);
/************************************************************
* Migration functions
***********************************************************/
/*
* Common logic to directly migrate a single LRU page suitable for
* pages that do not use PagePrivate/PagePrivate2.
*
* Pages are locked upon entry and exit.
*/
int migrate_page(struct address_space *mapping,
struct page *newpage, struct page *page,
enum migrate_mode mode)
{
int rc;
BUG_ON(PageWriteback(page)); /* Writeback must be complete */
rc = migrate_page_move_mapping(mapping, newpage, page, 0);
if (rc != MIGRATEPAGE_SUCCESS)
return rc;
if (mode != MIGRATE_SYNC_NO_COPY)
migrate_page_copy(newpage, page);
else
migrate_page_states(newpage, page);
return MIGRATEPAGE_SUCCESS;
}
EXPORT_SYMBOL(migrate_page);
#ifdef CONFIG_BLOCK
/* Returns true if all buffers are successfully locked */
static bool buffer_migrate_lock_buffers(struct buffer_head *head,
enum migrate_mode mode)
{
struct buffer_head *bh = head;
/* Simple case, sync compaction */
if (mode != MIGRATE_ASYNC) {
do {
lock_buffer(bh);
bh = bh->b_this_page;
} while (bh != head);
return true;
}
/* async case, we cannot block on lock_buffer so use trylock_buffer */
do {
if (!trylock_buffer(bh)) {
/*
* We failed to lock the buffer and cannot stall in
* async migration. Release the taken locks
*/
struct buffer_head *failed_bh = bh;
bh = head;
while (bh != failed_bh) {
unlock_buffer(bh);
bh = bh->b_this_page;
}
return false;
}
bh = bh->b_this_page;
} while (bh != head);
return true;
}
static int __buffer_migrate_page(struct address_space *mapping,
struct page *newpage, struct page *page, enum migrate_mode mode,
bool check_refs)
{
struct buffer_head *bh, *head;
int rc;
int expected_count;
if (!page_has_buffers(page))
return migrate_page(mapping, newpage, page, mode);
/* Check whether page does not have extra refs before we do more work */
expected_count = expected_page_refs(mapping, page);
if (page_count(page) != expected_count)
return -EAGAIN;
head = page_buffers(page);
if (!buffer_migrate_lock_buffers(head, mode))
return -EAGAIN;
if (check_refs) {
bool busy;
bool invalidated = false;
recheck_buffers:
busy = false;
spin_lock(&mapping->private_lock);
bh = head;
do {
if (atomic_read(&bh->b_count)) {
busy = true;
break;
}
bh = bh->b_this_page;
} while (bh != head);
if (busy) {
if (invalidated) {
rc = -EAGAIN;
goto unlock_buffers;
}
spin_unlock(&mapping->private_lock);
invalidate_bh_lrus();
invalidated = true;
goto recheck_buffers;
}
}
rc = migrate_page_move_mapping(mapping, newpage, page, 0);
if (rc != MIGRATEPAGE_SUCCESS)
goto unlock_buffers;
attach_page_private(newpage, detach_page_private(page));
bh = head;
do {
set_bh_page(bh, newpage, bh_offset(bh));
bh = bh->b_this_page;
} while (bh != head);
if (mode != MIGRATE_SYNC_NO_COPY)
migrate_page_copy(newpage, page);
else
migrate_page_states(newpage, page);
rc = MIGRATEPAGE_SUCCESS;
unlock_buffers:
if (check_refs)
spin_unlock(&mapping->private_lock);
bh = head;
do {
unlock_buffer(bh);
bh = bh->b_this_page;
} while (bh != head);
return rc;
}
/*
* Migration function for pages with buffers. This function can only be used
* if the underlying filesystem guarantees that no other references to "page"
* exist. For example attached buffer heads are accessed only under page lock.
*/
int buffer_migrate_page(struct address_space *mapping,
struct page *newpage, struct page *page, enum migrate_mode mode)
{
return __buffer_migrate_page(mapping, newpage, page, mode, false);
}
EXPORT_SYMBOL(buffer_migrate_page);
/*
* Same as above except that this variant is more careful and checks that there
* are also no buffer head references. This function is the right one for
* mappings where buffer heads are directly looked up and referenced (such as
* block device mappings).
*/
int buffer_migrate_page_norefs(struct address_space *mapping,
struct page *newpage, struct page *page, enum migrate_mode mode)
{
return __buffer_migrate_page(mapping, newpage, page, mode, true);
}
#endif
/*
* Writeback a page to clean the dirty state
*/
static int writeout(struct address_space *mapping, struct page *page)
{
struct writeback_control wbc = {
.sync_mode = WB_SYNC_NONE,
.nr_to_write = 1,
.range_start = 0,
.range_end = LLONG_MAX,
.for_reclaim = 1
};
int rc;
if (!mapping->a_ops->writepage)
/* No write method for the address space */
return -EINVAL;
if (!clear_page_dirty_for_io(page))
/* Someone else already triggered a write */
return -EAGAIN;
/*
* A dirty page may imply that the underlying filesystem has
* the page on some queue. So the page must be clean for
* migration. Writeout may mean we loose the lock and the
* page state is no longer what we checked for earlier.
* At this point we know that the migration attempt cannot
* be successful.
*/
remove_migration_ptes(page, page, false);
rc = mapping->a_ops->writepage(page, &wbc);
if (rc != AOP_WRITEPAGE_ACTIVATE)
/* unlocked. Relock */
lock_page(page);
return (rc < 0) ? -EIO : -EAGAIN;
}
/*
* Default handling if a filesystem does not provide a migration function.
*/
static int fallback_migrate_page(struct address_space *mapping,
struct page *newpage, struct page *page, enum migrate_mode mode)
{
if (PageDirty(page)) {
/* Only writeback pages in full synchronous migration */
switch (mode) {
case MIGRATE_SYNC:
case MIGRATE_SYNC_NO_COPY:
break;
default:
return -EBUSY;
}
return writeout(mapping, page);
}
/*
* Buffers may be managed in a filesystem specific way.
* We must have no buffers or drop them.
*/
if (page_has_private(page) &&
!try_to_release_page(page, GFP_KERNEL))
return mode == MIGRATE_SYNC ? -EAGAIN : -EBUSY;
return migrate_page(mapping, newpage, page, mode);
}
/*
* Move a page to a newly allocated page
* The page is locked and all ptes have been successfully removed.
*
* The new page will have replaced the old page if this function
* is successful.
*
* Return value:
* < 0 - error code
* MIGRATEPAGE_SUCCESS - success
*/
static int move_to_new_page(struct page *newpage, struct page *page,
enum migrate_mode mode)
{
struct address_space *mapping;
int rc = -EAGAIN;
bool is_lru = !__PageMovable(page);
VM_BUG_ON_PAGE(!PageLocked(page), page);
VM_BUG_ON_PAGE(!PageLocked(newpage), newpage);
mapping = page_mapping(page);
if (likely(is_lru)) {
if (!mapping)
rc = migrate_page(mapping, newpage, page, mode);
else if (mapping->a_ops->migratepage)
/*
* Most pages have a mapping and most filesystems
* provide a migratepage callback. Anonymous pages
* are part of swap space which also has its own
* migratepage callback. This is the most common path
* for page migration.
*/
rc = mapping->a_ops->migratepage(mapping, newpage,
page, mode);
else
rc = fallback_migrate_page(mapping, newpage,
page, mode);
} else {
/*
* In case of non-lru page, it could be released after
* isolation step. In that case, we shouldn't try migration.
*/
VM_BUG_ON_PAGE(!PageIsolated(page), page);
if (!PageMovable(page)) {
rc = MIGRATEPAGE_SUCCESS;
ClearPageIsolated(page);
goto out;
}
rc = mapping->a_ops->migratepage(mapping, newpage,
page, mode);
WARN_ON_ONCE(rc == MIGRATEPAGE_SUCCESS &&
!PageIsolated(page));
}
/*
* When successful, old pagecache page->mapping must be cleared before
* page is freed; but stats require that PageAnon be left as PageAnon.
*/
if (rc == MIGRATEPAGE_SUCCESS) {
if (__PageMovable(page)) {
VM_BUG_ON_PAGE(!PageIsolated(page), page);
/*
* We clear PG_movable under page_lock so any compactor
* cannot try to migrate this page.
*/
ClearPageIsolated(page);
}
/*
* Anonymous and movable page->mapping will be cleared by
* free_pages_prepare so don't reset it here for keeping
* the type to work PageAnon, for example.
*/
if (!PageMappingFlags(page))
page->mapping = NULL;
if (likely(!is_zone_device_page(newpage))) {
int i, nr = compound_nr(newpage);
for (i = 0; i < nr; i++)
flush_dcache_page(newpage + i);
}
}
out:
return rc;
}
static int __unmap_and_move(struct page *page, struct page *newpage,
int force, enum migrate_mode mode)
{
int rc = -EAGAIN;
int page_was_mapped = 0;
struct anon_vma *anon_vma = NULL;
bool is_lru = !__PageMovable(page);
if (!trylock_page(page)) {
if (!force || mode == MIGRATE_ASYNC)
goto out;
/*
* It's not safe for direct compaction to call lock_page.
* For example, during page readahead pages are added locked
* to the LRU. Later, when the IO completes the pages are
* marked uptodate and unlocked. However, the queueing
* could be merging multiple pages for one bio (e.g.
* mpage_readahead). If an allocation happens for the
* second or third page, the process can end up locking
* the same page twice and deadlocking. Rather than
* trying to be clever about what pages can be locked,
* avoid the use of lock_page for direct compaction
* altogether.
*/
if (current->flags & PF_MEMALLOC)
goto out;
lock_page(page);
}
if (PageWriteback(page)) {
/*
* Only in the case of a full synchronous migration is it
* necessary to wait for PageWriteback. In the async case,
* the retry loop is too short and in the sync-light case,
* the overhead of stalling is too much
*/
switch (mode) {
case MIGRATE_SYNC:
case MIGRATE_SYNC_NO_COPY:
break;
default:
rc = -EBUSY;
goto out_unlock;
}
if (!force)
goto out_unlock;
wait_on_page_writeback(page);
}
/*
* By try_to_unmap(), page->mapcount goes down to 0 here. In this case,
* we cannot notice that anon_vma is freed while we migrates a page.
* This get_anon_vma() delays freeing anon_vma pointer until the end
* of migration. File cache pages are no problem because of page_lock()
* File Caches may use write_page() or lock_page() in migration, then,
* just care Anon page here.
*
* Only page_get_anon_vma() understands the subtleties of
* getting a hold on an anon_vma from outside one of its mms.
* But if we cannot get anon_vma, then we won't need it anyway,
* because that implies that the anon page is no longer mapped
* (and cannot be remapped so long as we hold the page lock).
*/
if (PageAnon(page) && !PageKsm(page))
anon_vma = page_get_anon_vma(page);
/*
* Block others from accessing the new page when we get around to
* establishing additional references. We are usually the only one
* holding a reference to newpage at this point. We used to have a BUG
* here if trylock_page(newpage) fails, but would like to allow for
* cases where there might be a race with the previous use of newpage.
* This is much like races on refcount of oldpage: just don't BUG().
*/
if (unlikely(!trylock_page(newpage)))
goto out_unlock;
if (unlikely(!is_lru)) {
rc = move_to_new_page(newpage, page, mode);
goto out_unlock_both;
}
/*
* Corner case handling:
* 1. When a new swap-cache page is read into, it is added to the LRU
* and treated as swapcache but it has no rmap yet.
* Calling try_to_unmap() against a page->mapping==NULL page will
* trigger a BUG. So handle it here.
* 2. An orphaned page (see truncate_complete_page) might have
* fs-private metadata. The page can be picked up due to memory
* offlining. Everywhere else except page reclaim, the page is
* invisible to the vm, so the page can not be migrated. So try to
* free the metadata, so the page can be freed.
*/
if (!page->mapping) {
VM_BUG_ON_PAGE(PageAnon(page), page);
if (page_has_private(page)) {
try_to_free_buffers(page);
goto out_unlock_both;
}
} else if (page_mapped(page)) {
/* Establish migration ptes */
VM_BUG_ON_PAGE(PageAnon(page) && !PageKsm(page) && !anon_vma,
page);
try_to_unmap(page, TTU_MIGRATION|TTU_IGNORE_MLOCK);
page_was_mapped = 1;
}
if (!page_mapped(page))
rc = move_to_new_page(newpage, page, mode);
if (page_was_mapped)
remove_migration_ptes(page,
rc == MIGRATEPAGE_SUCCESS ? newpage : page, false);
out_unlock_both:
unlock_page(newpage);
out_unlock:
/* Drop an anon_vma reference if we took one */
if (anon_vma)
put_anon_vma(anon_vma);
unlock_page(page);
out:
/*
* If migration is successful, decrease refcount of the newpage
* which will not free the page because new page owner increased
* refcounter. As well, if it is LRU page, add the page to LRU
* list in here. Use the old state of the isolated source page to
* determine if we migrated a LRU page. newpage was already unlocked
* and possibly modified by its owner - don't rely on the page
* state.
*/
if (rc == MIGRATEPAGE_SUCCESS) {
if (unlikely(!is_lru))
put_page(newpage);
else
putback_lru_page(newpage);
}
return rc;
}
/*
* Obtain the lock on page, remove all ptes and migrate the page
* to the newly allocated page in newpage.
*/
static int unmap_and_move(new_page_t get_new_page,
free_page_t put_new_page,
unsigned long private, struct page *page,
int force, enum migrate_mode mode,
enum migrate_reason reason)
{
int rc = MIGRATEPAGE_SUCCESS;
struct page *newpage = NULL;
if (!thp_migration_supported() && PageTransHuge(page))
return -ENOMEM;
if (page_count(page) == 1) {
/* page was freed from under us. So we are done. */
ClearPageActive(page);
ClearPageUnevictable(page);
if (unlikely(__PageMovable(page))) {
lock_page(page);
if (!PageMovable(page))
ClearPageIsolated(page);
unlock_page(page);
}
goto out;
}
newpage = get_new_page(page, private);
if (!newpage)
return -ENOMEM;
rc = __unmap_and_move(page, newpage, force, mode);
if (rc == MIGRATEPAGE_SUCCESS)
set_page_owner_migrate_reason(newpage, reason);
out:
if (rc != -EAGAIN) {
/*
* A page that has been migrated has all references
* removed and will be freed. A page that has not been
* migrated will have kept its references and be restored.
*/
list_del(&page->lru);
/*
* Compaction can migrate also non-LRU pages which are
* not accounted to NR_ISOLATED_*. They can be recognized
* as __PageMovable
*/
if (likely(!__PageMovable(page)))
mod_node_page_state(page_pgdat(page), NR_ISOLATED_ANON +
page_is_file_lru(page), -thp_nr_pages(page));
}
/*
* If migration is successful, releases reference grabbed during
* isolation. Otherwise, restore the page to right list unless
* we want to retry.
*/
if (rc == MIGRATEPAGE_SUCCESS) {
if (reason != MR_MEMORY_FAILURE)
/*
* We release the page in page_handle_poison.
*/
put_page(page);
} else {
if (rc != -EAGAIN) {
if (likely(!__PageMovable(page))) {
putback_lru_page(page);
goto put_new;
}
lock_page(page);
if (PageMovable(page))
putback_movable_page(page);
else
ClearPageIsolated(page);
unlock_page(page);
put_page(page);
}
put_new:
if (put_new_page)
put_new_page(newpage, private);
else
put_page(newpage);
}
return rc;
}
/*
* Counterpart of unmap_and_move_page() for hugepage migration.
*
* This function doesn't wait the completion of hugepage I/O
* because there is no race between I/O and migration for hugepage.
* Note that currently hugepage I/O occurs only in direct I/O
* where no lock is held and PG_writeback is irrelevant,
* and writeback status of all subpages are counted in the reference
* count of the head page (i.e. if all subpages of a 2MB hugepage are
* under direct I/O, the reference of the head page is 512 and a bit more.)
* This means that when we try to migrate hugepage whose subpages are
* doing direct I/O, some references remain after try_to_unmap() and
* hugepage migration fails without data corruption.
*
* There is also no race when direct I/O is issued on the page under migration,
* because then pte is replaced with migration swap entry and direct I/O code
* will wait in the page fault for migration to complete.
*/
static int unmap_and_move_huge_page(new_page_t get_new_page,
free_page_t put_new_page, unsigned long private,
struct page *hpage, int force,
enum migrate_mode mode, int reason)
{
int rc = -EAGAIN;
int page_was_mapped = 0;
struct page *new_hpage;
struct anon_vma *anon_vma = NULL;
struct address_space *mapping = NULL;
/*
* Migratability of hugepages depends on architectures and their size.
* This check is necessary because some callers of hugepage migration
* like soft offline and memory hotremove don't walk through page
* tables or check whether the hugepage is pmd-based or not before
* kicking migration.
*/
if (!hugepage_migration_supported(page_hstate(hpage))) {
putback_active_hugepage(hpage);
return -ENOSYS;
}
new_hpage = get_new_page(hpage, private);
if (!new_hpage)
return -ENOMEM;
if (!trylock_page(hpage)) {
if (!force)
goto out;
switch (mode) {
case MIGRATE_SYNC:
case MIGRATE_SYNC_NO_COPY:
break;
default:
goto out;
}
lock_page(hpage);
}
/*
* Check for pages which are in the process of being freed. Without
* page_mapping() set, hugetlbfs specific move page routine will not
* be called and we could leak usage counts for subpools.
*/
if (page_private(hpage) && !page_mapping(hpage)) {
rc = -EBUSY;
goto out_unlock;
}
if (PageAnon(hpage))
anon_vma = page_get_anon_vma(hpage);
if (unlikely(!trylock_page(new_hpage)))
goto put_anon;
if (page_mapped(hpage)) {
bool mapping_locked = false;
enum ttu_flags ttu = TTU_MIGRATION|TTU_IGNORE_MLOCK;
if (!PageAnon(hpage)) {
/*
* In shared mappings, try_to_unmap could potentially
* call huge_pmd_unshare. Because of this, take
* semaphore in write mode here and set TTU_RMAP_LOCKED
* to let lower levels know we have taken the lock.
*/
mapping = hugetlb_page_mapping_lock_write(hpage);
if (unlikely(!mapping))
goto unlock_put_anon;
mapping_locked = true;
ttu |= TTU_RMAP_LOCKED;
}
try_to_unmap(hpage, ttu);
page_was_mapped = 1;
if (mapping_locked)
i_mmap_unlock_write(mapping);
}
if (!page_mapped(hpage))
rc = move_to_new_page(new_hpage, hpage, mode);
if (page_was_mapped)
remove_migration_ptes(hpage,
rc == MIGRATEPAGE_SUCCESS ? new_hpage : hpage, false);
unlock_put_anon:
unlock_page(new_hpage);
put_anon:
if (anon_vma)
put_anon_vma(anon_vma);
if (rc == MIGRATEPAGE_SUCCESS) {
move_hugetlb_state(hpage, new_hpage, reason);
put_new_page = NULL;
}
out_unlock:
unlock_page(hpage);
out:
if (rc != -EAGAIN)
putback_active_hugepage(hpage);
/*
* If migration was not successful and there's a freeing callback, use
* it. Otherwise, put_page() will drop the reference grabbed during
* isolation.
*/
if (put_new_page)
put_new_page(new_hpage, private);
else
putback_active_hugepage(new_hpage);
return rc;
}
/*
* migrate_pages - migrate the pages specified in a list, to the free pages
* supplied as the target for the page migration
*
* @from: The list of pages to be migrated.
* @get_new_page: The function used to allocate free pages to be used
* as the target of the page migration.
* @put_new_page: The function used to free target pages if migration
* fails, or NULL if no special handling is necessary.
* @private: Private data to be passed on to get_new_page()
* @mode: The migration mode that specifies the constraints for
* page migration, if any.
* @reason: The reason for page migration.
*
* The function returns after 10 attempts or if no pages are movable any more
* because the list has become empty or no retryable pages exist any more.
* The caller should call putback_movable_pages() to return pages to the LRU
* or free list only if ret != 0.
*
* Returns the number of pages that were not migrated, or an error code.
*/
int migrate_pages(struct list_head *from, new_page_t get_new_page,
free_page_t put_new_page, unsigned long private,
enum migrate_mode mode, int reason)
{
int retry = 1;
int thp_retry = 1;
int nr_failed = 0;
int nr_succeeded = 0;
int nr_thp_succeeded = 0;
int nr_thp_failed = 0;
int nr_thp_split = 0;
int pass = 0;
bool is_thp = false;
struct page *page;
struct page *page2;
int swapwrite = current->flags & PF_SWAPWRITE;
int rc, nr_subpages;
trace_mm_migrate_pages_start(mode, reason);
if (!swapwrite)
current->flags |= PF_SWAPWRITE;
for (pass = 0; pass < 10 && (retry || thp_retry); pass++) {
retry = 0;
thp_retry = 0;
list_for_each_entry_safe(page, page2, from, lru) {
retry:
/*
* THP statistics is based on the source huge page.
* Capture required information that might get lost
* during migration.
*/
is_thp = PageTransHuge(page) && !PageHuge(page);
nr_subpages = thp_nr_pages(page);
cond_resched();
if (PageHuge(page))
rc = unmap_and_move_huge_page(get_new_page,
put_new_page, private, page,
pass > 2, mode, reason);
else
rc = unmap_and_move(get_new_page, put_new_page,
private, page, pass > 2, mode,
reason);
switch(rc) {
case -ENOMEM:
/*
* THP migration might be unsupported or the
* allocation could've failed so we should
* retry on the same page with the THP split
* to base pages.
*
* Head page is retried immediately and tail
* pages are added to the tail of the list so
* we encounter them after the rest of the list
* is processed.
*/
if (is_thp) {
lock_page(page);
rc = split_huge_page_to_list(page, from);
unlock_page(page);
if (!rc) {
list_safe_reset_next(page, page2, lru);
nr_thp_split++;
goto retry;
}
nr_thp_failed++;
nr_failed += nr_subpages;
goto out;
}
nr_failed++;
goto out;
case -EAGAIN:
if (is_thp) {
thp_retry++;
break;
}
retry++;
break;
case MIGRATEPAGE_SUCCESS:
if (is_thp) {
nr_thp_succeeded++;
nr_succeeded += nr_subpages;
break;
}
nr_succeeded++;
break;
default:
/*
* Permanent failure (-EBUSY, -ENOSYS, etc.):
* unlike -EAGAIN case, the failed page is
* removed from migration page list and not
* retried in the next outer loop.
*/
if (is_thp) {
nr_thp_failed++;
nr_failed += nr_subpages;
break;
}
nr_failed++;
break;
}
}
}
nr_failed += retry + thp_retry;
nr_thp_failed += thp_retry;
rc = nr_failed;
out:
count_vm_events(PGMIGRATE_SUCCESS, nr_succeeded);
count_vm_events(PGMIGRATE_FAIL, nr_failed);
count_vm_events(THP_MIGRATION_SUCCESS, nr_thp_succeeded);
count_vm_events(THP_MIGRATION_FAIL, nr_thp_failed);
count_vm_events(THP_MIGRATION_SPLIT, nr_thp_split);
trace_mm_migrate_pages(nr_succeeded, nr_failed, nr_thp_succeeded,
nr_thp_failed, nr_thp_split, mode, reason);
if (!swapwrite)
current->flags &= ~PF_SWAPWRITE;
return rc;
}
EXPORT_SYMBOL_GPL(migrate_pages);
struct page *alloc_migration_target(struct page *page, unsigned long private)
{
struct migration_target_control *mtc;
gfp_t gfp_mask;
unsigned int order = 0;
struct page *new_page = NULL;
int nid;
int zidx;
mtc = (struct migration_target_control *)private;
gfp_mask = mtc->gfp_mask;
nid = mtc->nid;
if (nid == NUMA_NO_NODE)
nid = page_to_nid(page);
if (PageHuge(page)) {
struct hstate *h = page_hstate(compound_head(page));
gfp_mask = htlb_modify_alloc_mask(h, gfp_mask);
return alloc_huge_page_nodemask(h, nid, mtc->nmask, gfp_mask);
}
if (PageTransHuge(page)) {
/*
* clear __GFP_RECLAIM to make the migration callback
* consistent with regular THP allocations.
*/
gfp_mask &= ~__GFP_RECLAIM;
gfp_mask |= GFP_TRANSHUGE;
order = HPAGE_PMD_ORDER;
}
zidx = zone_idx(page_zone(page));
if (is_highmem_idx(zidx) || zidx == ZONE_MOVABLE)
gfp_mask |= __GFP_HIGHMEM;
new_page = __alloc_pages_nodemask(gfp_mask, order, nid, mtc->nmask);
if (new_page && PageTransHuge(new_page))
prep_transhuge_page(new_page);
return new_page;
}
#ifdef CONFIG_NUMA
static int store_status(int __user *status, int start, int value, int nr)
{
while (nr-- > 0) {
if (put_user(value, status + start))
return -EFAULT;
start++;
}
return 0;
}
static int do_move_pages_to_node(struct mm_struct *mm,
struct list_head *pagelist, int node)
{
int err;
struct migration_target_control mtc = {
.nid = node,
.gfp_mask = GFP_HIGHUSER_MOVABLE | __GFP_THISNODE,
};
err = migrate_pages(pagelist, alloc_migration_target, NULL,
(unsigned long)&mtc, MIGRATE_SYNC, MR_SYSCALL);
if (err)
putback_movable_pages(pagelist);
return err;
}
/*
* Resolves the given address to a struct page, isolates it from the LRU and
* puts it to the given pagelist.
* Returns:
* errno - if the page cannot be found/isolated
* 0 - when it doesn't have to be migrated because it is already on the
* target node
* 1 - when it has been queued
*/
static int add_page_for_migration(struct mm_struct *mm, unsigned long addr,
int node, struct list_head *pagelist, bool migrate_all)
{
struct vm_area_struct *vma;
struct page *page;
unsigned int follflags;
int err;
mmap_read_lock(mm);
err = -EFAULT;
vma = find_vma(mm, addr);
if (!vma || addr < vma->vm_start || !vma_migratable(vma))
goto out;
/* FOLL_DUMP to ignore special (like zero) pages */
follflags = FOLL_GET | FOLL_DUMP;
page = follow_page(vma, addr, follflags);
err = PTR_ERR(page);
if (IS_ERR(page))
goto out;
err = -ENOENT;
if (!page)
goto out;
err = 0;
if (page_to_nid(page) == node)
goto out_putpage;
err = -EACCES;
if (page_mapcount(page) > 1 && !migrate_all)
goto out_putpage;
if (PageHuge(page)) {
if (PageHead(page)) {
isolate_huge_page(page, pagelist);
err = 1;
}
} else {
struct page *head;
head = compound_head(page);
err = isolate_lru_page(head);
if (err)
goto out_putpage;
err = 1;
list_add_tail(&head->lru, pagelist);
mod_node_page_state(page_pgdat(head),
NR_ISOLATED_ANON + page_is_file_lru(head),
thp_nr_pages(head));
}
out_putpage:
/*
* Either remove the duplicate refcount from
* isolate_lru_page() or drop the page ref if it was
* not isolated.
*/
put_user_page(page);
out:
mmap_read_unlock(mm);
return err;
}
static int move_pages_and_store_status(struct mm_struct *mm, int node,
struct list_head *pagelist, int __user *status,
int start, int i, unsigned long nr_pages)
{
int err;
if (list_empty(pagelist))
return 0;
err = do_move_pages_to_node(mm, pagelist, node);
if (err) {
/*
* Positive err means the number of failed
* pages to migrate. Since we are going to
* abort and return the number of non-migrated
* pages, so need to incude the rest of the
* nr_pages that have not been attempted as
* well.
*/
if (err > 0)
err += nr_pages - i - 1;
return err;
}
return store_status(status, start, node, i - start);
}
/*
* Migrate an array of page address onto an array of nodes and fill
* the corresponding array of status.
*/
static int do_pages_move(struct mm_struct *mm, nodemask_t task_nodes,
unsigned long nr_pages,
const void __user * __user *pages,
const int __user *nodes,
int __user *status, int flags)
{
int current_node = NUMA_NO_NODE;
LIST_HEAD(pagelist);
int start, i;
int err = 0, err1;
lru_cache_disable();
for (i = start = 0; i < nr_pages; i++) {
const void __user *p;
unsigned long addr;
int node;
err = -EFAULT;
if (get_user(p, pages + i))
goto out_flush;
if (get_user(node, nodes + i))
goto out_flush;
addr = (unsigned long)untagged_addr(p);
err = -ENODEV;
if (node < 0 || node >= MAX_NUMNODES)
goto out_flush;
if (!node_state(node, N_MEMORY))
goto out_flush;
err = -EACCES;
if (!node_isset(node, task_nodes))
goto out_flush;
if (current_node == NUMA_NO_NODE) {
current_node = node;
start = i;
} else if (node != current_node) {
err = move_pages_and_store_status(mm, current_node,
&pagelist, status, start, i, nr_pages);
if (err)
goto out;
start = i;
current_node = node;
}
/*
* Errors in the page lookup or isolation are not fatal and we simply
* report them via status
*/
err = add_page_for_migration(mm, addr, current_node,
&pagelist, flags & MPOL_MF_MOVE_ALL);
if (err > 0) {
/* The page is successfully queued for migration */
continue;
}
/*
* If the page is already on the target node (!err), store the
* node, otherwise, store the err.
*/
err = store_status(status, i, err ? : current_node, 1);
if (err)
goto out_flush;
err = move_pages_and_store_status(mm, current_node, &pagelist,
status, start, i, nr_pages);
if (err)
goto out;
current_node = NUMA_NO_NODE;
}
out_flush:
/* Make sure we do not overwrite the existing error */
err1 = move_pages_and_store_status(mm, current_node, &pagelist,
status, start, i, nr_pages);
if (err >= 0)
err = err1;
out:
lru_cache_enable();
return err;
}
/*
* Determine the nodes of an array of pages and store it in an array of status.
*/
static void do_pages_stat_array(struct mm_struct *mm, unsigned long nr_pages,
const void __user **pages, int *status)
{
unsigned long i;
mmap_read_lock(mm);
for (i = 0; i < nr_pages; i++) {
unsigned long addr = (unsigned long)(*pages);
struct vm_area_struct *vma;
struct page *page;
int err = -EFAULT;
vma = find_vma(mm, addr);
if (!vma || addr < vma->vm_start)
goto set_status;
/* FOLL_DUMP to ignore special (like zero) pages */
page = follow_page(vma, addr, FOLL_DUMP);
err = PTR_ERR(page);
if (IS_ERR(page))
goto set_status;
err = page ? page_to_nid(page) : -ENOENT;
set_status:
*status = err;
pages++;
status++;
}
mmap_read_unlock(mm);
}
/*
* Determine the nodes of a user array of pages and store it in
* a user array of status.
*/
static int do_pages_stat(struct mm_struct *mm, unsigned long nr_pages,
const void __user * __user *pages,
int __user *status)
{
#define DO_PAGES_STAT_CHUNK_NR 16
const void __user *chunk_pages[DO_PAGES_STAT_CHUNK_NR];
int chunk_status[DO_PAGES_STAT_CHUNK_NR];
while (nr_pages) {
unsigned long chunk_nr;
chunk_nr = nr_pages;
if (chunk_nr > DO_PAGES_STAT_CHUNK_NR)
chunk_nr = DO_PAGES_STAT_CHUNK_NR;
if (copy_from_user(chunk_pages, pages, chunk_nr * sizeof(*chunk_pages)))
break;
do_pages_stat_array(mm, chunk_nr, chunk_pages, chunk_status);
if (copy_to_user(status, chunk_status, chunk_nr * sizeof(*status)))
break;
pages += chunk_nr;
status += chunk_nr;
nr_pages -= chunk_nr;
}
return nr_pages ? -EFAULT : 0;
}
static struct mm_struct *find_mm_struct(pid_t pid, nodemask_t *mem_nodes)
{
struct task_struct *task;
struct mm_struct *mm;
/*
* There is no need to check if current process has the right to modify
* the specified process when they are same.
*/
if (!pid) {
mmget(current->mm);
*mem_nodes = cpuset_mems_allowed(current);
return current->mm;
}
/* Find the mm_struct */
rcu_read_lock();
task = find_task_by_vpid(pid);
if (!task) {
rcu_read_unlock();
return ERR_PTR(-ESRCH);
}
get_task_struct(task);
/*
* Check if this process has the right to modify the specified
* process. Use the regular "ptrace_may_access()" checks.
*/
if (!ptrace_may_access(task, PTRACE_MODE_READ_REALCREDS)) {
rcu_read_unlock();
mm = ERR_PTR(-EPERM);
goto out;
}
rcu_read_unlock();
mm = ERR_PTR(security_task_movememory(task));
if (IS_ERR(mm))
goto out;
*mem_nodes = cpuset_mems_allowed(task);
mm = get_task_mm(task);
out:
put_task_struct(task);
if (!mm)
mm = ERR_PTR(-EINVAL);
return mm;
}
/*
* Move a list of pages in the address space of the currently executing
* process.
*/
static int kernel_move_pages(pid_t pid, unsigned long nr_pages,
const void __user * __user *pages,
const int __user *nodes,
int __user *status, int flags)
{
struct mm_struct *mm;
int err;
nodemask_t task_nodes;
/* Check flags */
if (flags & ~(MPOL_MF_MOVE|MPOL_MF_MOVE_ALL))
return -EINVAL;
if ((flags & MPOL_MF_MOVE_ALL) && !capable(CAP_SYS_NICE))
return -EPERM;
mm = find_mm_struct(pid, &task_nodes);
if (IS_ERR(mm))
return PTR_ERR(mm);
if (nodes)
err = do_pages_move(mm, task_nodes, nr_pages, pages,
nodes, status, flags);
else
err = do_pages_stat(mm, nr_pages, pages, status);
mmput(mm);
return err;
}
SYSCALL_DEFINE6(move_pages, pid_t, pid, unsigned long, nr_pages,
const void __user * __user *, pages,
const int __user *, nodes,
int __user *, status, int, flags)
{
return kernel_move_pages(pid, nr_pages, pages, nodes, status, flags);
}
#ifdef CONFIG_COMPAT
COMPAT_SYSCALL_DEFINE6(move_pages, pid_t, pid, compat_ulong_t, nr_pages,
compat_uptr_t __user *, pages32,
const int __user *, nodes,
int __user *, status,
int, flags)
{
const void __user * __user *pages;
int i;
pages = compat_alloc_user_space(nr_pages * sizeof(void *));
for (i = 0; i < nr_pages; i++) {
compat_uptr_t p;
if (get_user(p, pages32 + i) ||
put_user(compat_ptr(p), pages + i))
return -EFAULT;
}
return kernel_move_pages(pid, nr_pages, pages, nodes, status, flags);
}
#endif /* CONFIG_COMPAT */
#ifdef CONFIG_NUMA_BALANCING
/*
* Returns true if this is a safe migration target node for misplaced NUMA
* pages. Currently it only checks the watermarks which crude
*/
static bool migrate_balanced_pgdat(struct pglist_data *pgdat,
unsigned long nr_migrate_pages)
{
int z;
for (z = pgdat->nr_zones - 1; z >= 0; z--) {
struct zone *zone = pgdat->node_zones + z;
if (!populated_zone(zone))
continue;
/* Avoid waking kswapd by allocating pages_to_migrate pages. */
if (!zone_watermark_ok(zone, 0,
high_wmark_pages(zone) +
nr_migrate_pages,
ZONE_MOVABLE, 0))
continue;
return true;
}
return false;
}
static struct page *alloc_misplaced_dst_page(struct page *page,
unsigned long data)
{
int nid = (int) data;
struct page *newpage;
newpage = __alloc_pages_node(nid,
(GFP_HIGHUSER_MOVABLE |
__GFP_THISNODE | __GFP_NOMEMALLOC |
__GFP_NORETRY | __GFP_NOWARN) &
~__GFP_RECLAIM, 0);
return newpage;
}
static int numamigrate_isolate_page(pg_data_t *pgdat, struct page *page)
{
int page_lru;
VM_BUG_ON_PAGE(compound_order(page) && !PageTransHuge(page), page);
/* Avoid migrating to a node that is nearly full */
if (!migrate_balanced_pgdat(pgdat, compound_nr(page)))
return 0;
if (isolate_lru_page(page))
return 0;
/*
* migrate_misplaced_transhuge_page() skips page migration's usual
* check on page_count(), so we must do it here, now that the page
* has been isolated: a GUP pin, or any other pin, prevents migration.
* The expected page count is 3: 1 for page's mapcount and 1 for the
* caller's pin and 1 for the reference taken by isolate_lru_page().
*/
if (PageTransHuge(page) && page_count(page) != 3) {
putback_lru_page(page);
return 0;
}
page_lru = page_is_file_lru(page);
mod_node_page_state(page_pgdat(page), NR_ISOLATED_ANON + page_lru,
thp_nr_pages(page));
/*
* Isolating the page has taken another reference, so the
* caller's reference can be safely dropped without the page
* disappearing underneath us during migration.
*/
put_page(page);
return 1;
}
bool pmd_trans_migrating(pmd_t pmd)
{
struct page *page = pmd_page(pmd);
return PageLocked(page);
}
/*
* Attempt to migrate a misplaced page to the specified destination
* node. Caller is expected to have an elevated reference count on
* the page that will be dropped by this function before returning.
*/
int migrate_misplaced_page(struct page *page, struct vm_fault *vmf,
int node)
{
pg_data_t *pgdat = NODE_DATA(node);
int isolated;
int nr_remaining;
LIST_HEAD(migratepages);
/*
* Don't migrate file pages that are mapped in multiple processes
* with execute permissions as they are probably shared libraries.
*/
if (page_mapcount(page) != 1 && page_is_file_lru(page) &&
(vmf->vma_flags & VM_EXEC))
goto out;
/*
* Also do not migrate dirty pages as not all filesystems can move
* dirty pages in MIGRATE_ASYNC mode which is a waste of cycles.
*/
if (page_is_file_lru(page) && PageDirty(page))
goto out;
isolated = numamigrate_isolate_page(pgdat, page);
if (!isolated)
goto out;
list_add(&page->lru, &migratepages);
nr_remaining = migrate_pages(&migratepages, alloc_misplaced_dst_page,
NULL, node, MIGRATE_ASYNC,
MR_NUMA_MISPLACED);
if (nr_remaining) {
if (!list_empty(&migratepages)) {
list_del(&page->lru);
dec_node_page_state(page, NR_ISOLATED_ANON +
page_is_file_lru(page));
putback_lru_page(page);
}
isolated = 0;
} else
count_vm_numa_event(NUMA_PAGE_MIGRATE);
BUG_ON(!list_empty(&migratepages));
return isolated;
out:
put_page(page);
return 0;
}
#endif /* CONFIG_NUMA_BALANCING */
#if defined(CONFIG_NUMA_BALANCING) && defined(CONFIG_TRANSPARENT_HUGEPAGE)
/*
* Migrates a THP to a given target node. page must be locked and is unlocked
* before returning.
*/
int migrate_misplaced_transhuge_page(struct mm_struct *mm,
struct vm_area_struct *vma,
pmd_t *pmd, pmd_t entry,
unsigned long address,
struct page *page, int node)
{
spinlock_t *ptl;
pg_data_t *pgdat = NODE_DATA(node);
int isolated = 0;
struct page *new_page = NULL;
int page_lru = page_is_file_lru(page);
unsigned long start = address & HPAGE_PMD_MASK;
new_page = alloc_pages_node(node,
(GFP_TRANSHUGE_LIGHT | __GFP_THISNODE),
HPAGE_PMD_ORDER);
if (!new_page)
goto out_fail;
prep_transhuge_page(new_page);
isolated = numamigrate_isolate_page(pgdat, page);
if (!isolated) {
put_page(new_page);
goto out_fail;
}
/* Prepare a page as a migration target */
__SetPageLocked(new_page);
if (PageSwapBacked(page))
__SetPageSwapBacked(new_page);
/* anon mapping, we can simply copy page->mapping to the new page: */
new_page->mapping = page->mapping;
new_page->index = page->index;
/* flush the cache before copying using the kernel virtual address */
flush_cache_range(vma, start, start + HPAGE_PMD_SIZE);
migrate_page_copy(new_page, page);
WARN_ON(PageLRU(new_page));
/* Recheck the target PMD */
ptl = pmd_lock(mm, pmd);
if (unlikely(!pmd_same(*pmd, entry) || !page_ref_freeze(page, 2))) {
spin_unlock(ptl);
/* Reverse changes made by migrate_page_copy() */
if (TestClearPageActive(new_page))
SetPageActive(page);
if (TestClearPageUnevictable(new_page))
SetPageUnevictable(page);
unlock_page(new_page);
put_page(new_page); /* Free it */
/* Retake the callers reference and putback on LRU */
get_page(page);
putback_lru_page(page);
mod_node_page_state(page_pgdat(page),
NR_ISOLATED_ANON + page_lru, -HPAGE_PMD_NR);
goto out_unlock;
}
entry = mk_huge_pmd(new_page, vma->vm_page_prot);
entry = maybe_pmd_mkwrite(pmd_mkdirty(entry), vma);
/*
* Overwrite the old entry under pagetable lock and establish
* the new PTE. Any parallel GUP will either observe the old
* page blocking on the page lock, block on the page table
* lock or observe the new page. The SetPageUptodate on the
* new page and page_add_new_anon_rmap guarantee the copy is
* visible before the pagetable update.
*/
page_add_anon_rmap(new_page, vma, start, true);
/*
* At this point the pmd is numa/protnone (i.e. non present) and the TLB
* has already been flushed globally. So no TLB can be currently
* caching this non present pmd mapping. There's no need to clear the
* pmd before doing set_pmd_at(), nor to flush the TLB after
* set_pmd_at(). Clearing the pmd here would introduce a race
* condition against MADV_DONTNEED, because MADV_DONTNEED only holds the
* mmap_lock for reading. If the pmd is set to NULL at any given time,
* MADV_DONTNEED won't wait on the pmd lock and it'll skip clearing this
* pmd.
*/
set_pmd_at(mm, start, pmd, entry);
update_mmu_cache_pmd(vma, address, &entry);
page_ref_unfreeze(page, 2);
mlock_migrate_page(new_page, page);
page_remove_rmap(page, true);
set_page_owner_migrate_reason(new_page, MR_NUMA_MISPLACED);
spin_unlock(ptl);
/* Take an "isolate" reference and put new page on the LRU. */
get_page(new_page);
putback_lru_page(new_page);
unlock_page(new_page);
unlock_page(page);
put_page(page); /* Drop the rmap reference */
put_page(page); /* Drop the LRU isolation reference */
count_vm_events(PGMIGRATE_SUCCESS, HPAGE_PMD_NR);
count_vm_numa_events(NUMA_PAGE_MIGRATE, HPAGE_PMD_NR);
mod_node_page_state(page_pgdat(page),
NR_ISOLATED_ANON + page_lru,
-HPAGE_PMD_NR);
return isolated;
out_fail:
count_vm_events(PGMIGRATE_FAIL, HPAGE_PMD_NR);
ptl = pmd_lock(mm, pmd);
if (pmd_same(*pmd, entry)) {
entry = pmd_modify(entry, vma->vm_page_prot);
set_pmd_at(mm, start, pmd, entry);
update_mmu_cache_pmd(vma, address, &entry);
}
spin_unlock(ptl);
out_unlock:
unlock_page(page);
put_page(page);
return 0;
}
#endif /* CONFIG_NUMA_BALANCING */
#endif /* CONFIG_NUMA */
#ifdef CONFIG_DEVICE_PRIVATE
static int migrate_vma_collect_hole(unsigned long start,
unsigned long end,
__always_unused int depth,
struct mm_walk *walk)
{
struct migrate_vma *migrate = walk->private;
unsigned long addr;
/* Only allow populating anonymous memory. */
if (!vma_is_anonymous(walk->vma)) {
for (addr = start; addr < end; addr += PAGE_SIZE) {
migrate->src[migrate->npages] = 0;
migrate->dst[migrate->npages] = 0;
migrate->npages++;
}
return 0;
}
for (addr = start; addr < end; addr += PAGE_SIZE) {
migrate->src[migrate->npages] = MIGRATE_PFN_MIGRATE;
migrate->dst[migrate->npages] = 0;
migrate->npages++;
migrate->cpages++;
}
return 0;
}
static int migrate_vma_collect_skip(unsigned long start,
unsigned long end,
struct mm_walk *walk)
{
struct migrate_vma *migrate = walk->private;
unsigned long addr;
for (addr = start; addr < end; addr += PAGE_SIZE) {
migrate->dst[migrate->npages] = 0;
migrate->src[migrate->npages++] = 0;
}
return 0;
}
static int migrate_vma_collect_pmd(pmd_t *pmdp,
unsigned long start,
unsigned long end,
struct mm_walk *walk)
{
struct migrate_vma *migrate = walk->private;
struct vm_area_struct *vma = walk->vma;
struct mm_struct *mm = vma->vm_mm;
unsigned long addr = start, unmapped = 0;
spinlock_t *ptl;
pte_t *ptep;
again:
if (pmd_none(*pmdp))
return migrate_vma_collect_hole(start, end, -1, walk);
if (pmd_trans_huge(*pmdp)) {
struct page *page;
ptl = pmd_lock(mm, pmdp);
if (unlikely(!pmd_trans_huge(*pmdp))) {
spin_unlock(ptl);
goto again;
}
page = pmd_page(*pmdp);
if (is_huge_zero_page(page)) {
spin_unlock(ptl);
split_huge_pmd(vma, pmdp, addr);
if (pmd_trans_unstable(pmdp))
return migrate_vma_collect_skip(start, end,
walk);
} else {
int ret;
get_page(page);
spin_unlock(ptl);
if (unlikely(!trylock_page(page)))
return migrate_vma_collect_skip(start, end,
walk);
ret = split_huge_page(page);
unlock_page(page);
put_page(page);
if (ret)
return migrate_vma_collect_skip(start, end,
walk);
if (pmd_none(*pmdp))
return migrate_vma_collect_hole(start, end, -1,
walk);
}
}
if (unlikely(pmd_bad(*pmdp)))
return migrate_vma_collect_skip(start, end, walk);
ptep = pte_offset_map_lock(mm, pmdp, addr, &ptl);
arch_enter_lazy_mmu_mode();
for (; addr < end; addr += PAGE_SIZE, ptep++) {
unsigned long mpfn = 0, pfn;
struct page *page;
swp_entry_t entry;
pte_t pte;
pte = *ptep;
if (pte_none(pte)) {
if (vma_is_anonymous(vma)) {
mpfn = MIGRATE_PFN_MIGRATE;
migrate->cpages++;
}
goto next;
}
if (!pte_present(pte)) {
/*
* Only care about unaddressable device page special
* page table entry. Other special swap entries are not
* migratable, and we ignore regular swapped page.
*/
entry = pte_to_swp_entry(pte);
if (!is_device_private_entry(entry))
goto next;
page = device_private_entry_to_page(entry);
if (!(migrate->flags &
MIGRATE_VMA_SELECT_DEVICE_PRIVATE) ||
page->pgmap->owner != migrate->pgmap_owner)
goto next;
mpfn = migrate_pfn(page_to_pfn(page)) |
MIGRATE_PFN_MIGRATE;
if (is_write_device_private_entry(entry))
mpfn |= MIGRATE_PFN_WRITE;
} else {
if (!(migrate->flags & MIGRATE_VMA_SELECT_SYSTEM))
goto next;
pfn = pte_pfn(pte);
if (is_zero_pfn(pfn)) {
mpfn = MIGRATE_PFN_MIGRATE;
migrate->cpages++;
goto next;
}
page = vm_normal_page(migrate->vma, addr, pte);
mpfn = migrate_pfn(pfn) | MIGRATE_PFN_MIGRATE;
mpfn |= pte_write(pte) ? MIGRATE_PFN_WRITE : 0;
}
/* FIXME support THP */
if (!page || !page->mapping || PageTransCompound(page)) {
mpfn = 0;
goto next;
}
/*
* By getting a reference on the page we pin it and that blocks
* any kind of migration. Side effect is that it "freezes" the
* pte.
*
* We drop this reference after isolating the page from the lru
* for non device page (device page are not on the lru and thus
* can't be dropped from it).
*/
get_page(page);
migrate->cpages++;
/*
* Optimize for the common case where page is only mapped once
* in one process. If we can lock the page, then we can safely
* set up a special migration page table entry now.
*/
if (trylock_page(page)) {
pte_t swp_pte;
mpfn |= MIGRATE_PFN_LOCKED;
ptep_get_and_clear(mm, addr, ptep);
/* Setup special migration page table entry */
entry = make_migration_entry(page, mpfn &
MIGRATE_PFN_WRITE);
swp_pte = swp_entry_to_pte(entry);
if (pte_present(pte)) {
if (pte_soft_dirty(pte))
swp_pte = pte_swp_mksoft_dirty(swp_pte);
if (pte_uffd_wp(pte))
swp_pte = pte_swp_mkuffd_wp(swp_pte);
} else {
if (pte_swp_soft_dirty(pte))
swp_pte = pte_swp_mksoft_dirty(swp_pte);
if (pte_swp_uffd_wp(pte))
swp_pte = pte_swp_mkuffd_wp(swp_pte);
}
set_pte_at(mm, addr, ptep, swp_pte);
/*
* This is like regular unmap: we remove the rmap and
* drop page refcount. Page won't be freed, as we took
* a reference just above.
*/
page_remove_rmap(page, false);
put_page(page);
if (pte_present(pte))
unmapped++;
}
next:
migrate->dst[migrate->npages] = 0;
migrate->src[migrate->npages++] = mpfn;
}
arch_leave_lazy_mmu_mode();
pte_unmap_unlock(ptep - 1, ptl);
/* Only flush the TLB if we actually modified any entries */
if (unmapped)
flush_tlb_range(walk->vma, start, end);
return 0;
}
static const struct mm_walk_ops migrate_vma_walk_ops = {
.pmd_entry = migrate_vma_collect_pmd,
.pte_hole = migrate_vma_collect_hole,
};
/*
* migrate_vma_collect() - collect pages over a range of virtual addresses
* @migrate: migrate struct containing all migration information
*
* This will walk the CPU page table. For each virtual address backed by a
* valid page, it updates the src array and takes a reference on the page, in
* order to pin the page until we lock it and unmap it.
*/
static void migrate_vma_collect(struct migrate_vma *migrate)
{
struct mmu_notifier_range range;
/*
* Note that the pgmap_owner is passed to the mmu notifier callback so
* that the registered device driver can skip invalidating device
* private page mappings that won't be migrated.
*/
mmu_notifier_range_init_migrate(&range, 0, migrate->vma,
migrate->vma->vm_mm, migrate->start, migrate->end,
migrate->pgmap_owner);
mmu_notifier_invalidate_range_start(&range);
walk_page_range(migrate->vma->vm_mm, migrate->start, migrate->end,
&migrate_vma_walk_ops, migrate);
mmu_notifier_invalidate_range_end(&range);
migrate->end = migrate->start + (migrate->npages << PAGE_SHIFT);
}
/*
* migrate_vma_check_page() - check if page is pinned or not
* @page: struct page to check
*
* Pinned pages cannot be migrated. This is the same test as in
* migrate_page_move_mapping(), except that here we allow migration of a
* ZONE_DEVICE page.
*/
static bool migrate_vma_check_page(struct page *page)
{
/*
* One extra ref because caller holds an extra reference, either from
* isolate_lru_page() for a regular page, or migrate_vma_collect() for
* a device page.
*/
int extra = 1;
/*
* FIXME support THP (transparent huge page), it is bit more complex to
* check them than regular pages, because they can be mapped with a pmd
* or with a pte (split pte mapping).
*/
if (PageCompound(page))
return false;
/* Page from ZONE_DEVICE have one extra reference */
if (is_zone_device_page(page)) {
/*
* Private page can never be pin as they have no valid pte and
* GUP will fail for those. Yet if there is a pending migration
* a thread might try to wait on the pte migration entry and
* will bump the page reference count. Sadly there is no way to
* differentiate a regular pin from migration wait. Hence to
* avoid 2 racing thread trying to migrate back to CPU to enter
* infinite loop (one stoping migration because the other is
* waiting on pte migration entry). We always return true here.
*
* FIXME proper solution is to rework migration_entry_wait() so
* it does not need to take a reference on page.
*/
return is_device_private_page(page);
}
/* For file back page */
if (page_mapping(page))
extra += 1 + page_has_private(page);
if ((page_count(page) - extra) > page_mapcount(page))
return false;
return true;
}
/*
* migrate_vma_prepare() - lock pages and isolate them from the lru
* @migrate: migrate struct containing all migration information
*
* This locks pages that have been collected by migrate_vma_collect(). Once each
* page is locked it is isolated from the lru (for non-device pages). Finally,
* the ref taken by migrate_vma_collect() is dropped, as locked pages cannot be
* migrated by concurrent kernel threads.
*/
static void migrate_vma_prepare(struct migrate_vma *migrate)
{
const unsigned long npages = migrate->npages;
const unsigned long start = migrate->start;
unsigned long addr, i, restore = 0;
bool allow_drain = true;
lru_add_drain();
for (i = 0; (i < npages) && migrate->cpages; i++) {
struct page *page = migrate_pfn_to_page(migrate->src[i]);
bool remap = true;
if (!page)
continue;
if (!(migrate->src[i] & MIGRATE_PFN_LOCKED)) {
/*
* Because we are migrating several pages there can be
* a deadlock between 2 concurrent migration where each
* are waiting on each other page lock.
*
* Make migrate_vma() a best effort thing and backoff
* for any page we can not lock right away.
*/
if (!trylock_page(page)) {
migrate->src[i] = 0;
migrate->cpages--;
put_page(page);
continue;
}
remap = false;
migrate->src[i] |= MIGRATE_PFN_LOCKED;
}
/* ZONE_DEVICE pages are not on LRU */
if (!is_zone_device_page(page)) {
if (!PageLRU(page) && allow_drain) {
/* Drain CPU's pagevec */
lru_add_drain_all();
allow_drain = false;
}
if (isolate_lru_page(page)) {
if (remap) {
migrate->src[i] &= ~MIGRATE_PFN_MIGRATE;
migrate->cpages--;
restore++;
} else {
migrate->src[i] = 0;
unlock_page(page);
migrate->cpages--;
put_page(page);
}
continue;
}
/* Drop the reference we took in collect */
put_page(page);
}
if (!migrate_vma_check_page(page)) {
if (remap) {
migrate->src[i] &= ~MIGRATE_PFN_MIGRATE;
migrate->cpages--;
restore++;
if (!is_zone_device_page(page)) {
get_page(page);
putback_lru_page(page);
}
} else {
migrate->src[i] = 0;
unlock_page(page);
migrate->cpages--;
if (!is_zone_device_page(page))
putback_lru_page(page);
else
put_page(page);
}
}
}
for (i = 0, addr = start; i < npages && restore; i++, addr += PAGE_SIZE) {
struct page *page = migrate_pfn_to_page(migrate->src[i]);
if (!page || (migrate->src[i] & MIGRATE_PFN_MIGRATE))
continue;
remove_migration_pte(page, migrate->vma, addr, page);
migrate->src[i] = 0;
unlock_page(page);
put_page(page);
restore--;
}
}
/*
* migrate_vma_unmap() - replace page mapping with special migration pte entry
* @migrate: migrate struct containing all migration information
*
* Replace page mapping (CPU page table pte) with a special migration pte entry
* and check again if it has been pinned. Pinned pages are restored because we
* cannot migrate them.
*
* This is the last step before we call the device driver callback to allocate
* destination memory and copy contents of original page over to new page.
*/
static void migrate_vma_unmap(struct migrate_vma *migrate)
{
int flags = TTU_MIGRATION | TTU_IGNORE_MLOCK;
const unsigned long npages = migrate->npages;
const unsigned long start = migrate->start;
unsigned long addr, i, restore = 0;
for (i = 0; i < npages; i++) {
struct page *page = migrate_pfn_to_page(migrate->src[i]);
if (!page || !(migrate->src[i] & MIGRATE_PFN_MIGRATE))
continue;
if (page_mapped(page)) {
try_to_unmap(page, flags);
if (page_mapped(page))
goto restore;
}
if (migrate_vma_check_page(page))
continue;
restore:
migrate->src[i] &= ~MIGRATE_PFN_MIGRATE;
migrate->cpages--;
restore++;
}
for (addr = start, i = 0; i < npages && restore; addr += PAGE_SIZE, i++) {
struct page *page = migrate_pfn_to_page(migrate->src[i]);
if (!page || (migrate->src[i] & MIGRATE_PFN_MIGRATE))
continue;
remove_migration_ptes(page, page, false);
migrate->src[i] = 0;
unlock_page(page);
restore--;
if (is_zone_device_page(page))
put_page(page);
else
putback_lru_page(page);
}
}
/**
* migrate_vma_setup() - prepare to migrate a range of memory
* @args: contains the vma, start, and pfns arrays for the migration
*
* Returns: negative errno on failures, 0 when 0 or more pages were migrated
* without an error.
*
* Prepare to migrate a range of memory virtual address range by collecting all
* the pages backing each virtual address in the range, saving them inside the
* src array. Then lock those pages and unmap them. Once the pages are locked
* and unmapped, check whether each page is pinned or not. Pages that aren't
* pinned have the MIGRATE_PFN_MIGRATE flag set (by this function) in the
* corresponding src array entry. Then restores any pages that are pinned, by
* remapping and unlocking those pages.
*
* The caller should then allocate destination memory and copy source memory to
* it for all those entries (ie with MIGRATE_PFN_VALID and MIGRATE_PFN_MIGRATE
* flag set). Once these are allocated and copied, the caller must update each
* corresponding entry in the dst array with the pfn value of the destination
* page and with the MIGRATE_PFN_VALID and MIGRATE_PFN_LOCKED flags set
* (destination pages must have their struct pages locked, via lock_page()).
*
* Note that the caller does not have to migrate all the pages that are marked
* with MIGRATE_PFN_MIGRATE flag in src array unless this is a migration from
* device memory to system memory. If the caller cannot migrate a device page
* back to system memory, then it must return VM_FAULT_SIGBUS, which has severe
* consequences for the userspace process, so it must be avoided if at all
* possible.
*
* For empty entries inside CPU page table (pte_none() or pmd_none() is true) we
* do set MIGRATE_PFN_MIGRATE flag inside the corresponding source array thus
* allowing the caller to allocate device memory for those unback virtual
* address. For this the caller simply has to allocate device memory and
* properly set the destination entry like for regular migration. Note that
* this can still fails and thus inside the device driver must check if the
* migration was successful for those entries after calling migrate_vma_pages()
* just like for regular migration.
*
* After that, the callers must call migrate_vma_pages() to go over each entry
* in the src array that has the MIGRATE_PFN_VALID and MIGRATE_PFN_MIGRATE flag
* set. If the corresponding entry in dst array has MIGRATE_PFN_VALID flag set,
* then migrate_vma_pages() to migrate struct page information from the source
* struct page to the destination struct page. If it fails to migrate the
* struct page information, then it clears the MIGRATE_PFN_MIGRATE flag in the
* src array.
*
* At this point all successfully migrated pages have an entry in the src
* array with MIGRATE_PFN_VALID and MIGRATE_PFN_MIGRATE flag set and the dst
* array entry with MIGRATE_PFN_VALID flag set.
*
* Once migrate_vma_pages() returns the caller may inspect which pages were
* successfully migrated, and which were not. Successfully migrated pages will
* have the MIGRATE_PFN_MIGRATE flag set for their src array entry.
*
* It is safe to update device page table after migrate_vma_pages() because
* both destination and source page are still locked, and the mmap_lock is held
* in read mode (hence no one can unmap the range being migrated).
*
* Once the caller is done cleaning up things and updating its page table (if it
* chose to do so, this is not an obligation) it finally calls
* migrate_vma_finalize() to update the CPU page table to point to new pages
* for successfully migrated pages or otherwise restore the CPU page table to
* point to the original source pages.
*/
int migrate_vma_setup(struct migrate_vma *args)
{
long nr_pages = (args->end - args->start) >> PAGE_SHIFT;
args->start &= PAGE_MASK;
args->end &= PAGE_MASK;
if (!args->vma || is_vm_hugetlb_page(args->vma) ||
(args->vma->vm_flags & VM_SPECIAL) || vma_is_dax(args->vma))
return -EINVAL;
if (nr_pages <= 0)
return -EINVAL;
if (args->start < args->vma->vm_start ||
args->start >= args->vma->vm_end)
return -EINVAL;
if (args->end <= args->vma->vm_start || args->end > args->vma->vm_end)
return -EINVAL;
if (!args->src || !args->dst)
return -EINVAL;
memset(args->src, 0, sizeof(*args->src) * nr_pages);
args->cpages = 0;
args->npages = 0;
migrate_vma_collect(args);
if (args->cpages)
migrate_vma_prepare(args);
if (args->cpages)
migrate_vma_unmap(args);
/*
* At this point pages are locked and unmapped, and thus they have
* stable content and can safely be copied to destination memory that
* is allocated by the drivers.
*/
return 0;
}
EXPORT_SYMBOL(migrate_vma_setup);
/*
* This code closely matches the code in:
* __handle_mm_fault()
* handle_pte_fault()
* do_anonymous_page()
* to map in an anonymous zero page but the struct page will be a ZONE_DEVICE
* private page.
*/
static void migrate_vma_insert_page(struct migrate_vma *migrate,
unsigned long addr,
struct page *page,
unsigned long *src,
unsigned long *dst)
{
struct vm_area_struct *vma = migrate->vma;
struct mm_struct *mm = vma->vm_mm;
bool flush = false;
spinlock_t *ptl;
pte_t entry;
pgd_t *pgdp;
p4d_t *p4dp;
pud_t *pudp;
pmd_t *pmdp;
pte_t *ptep;
/* Only allow populating anonymous memory */
if (!vma_is_anonymous(vma))
goto abort;
pgdp = pgd_offset(mm, addr);
p4dp = p4d_alloc(mm, pgdp, addr);
if (!p4dp)
goto abort;
pudp = pud_alloc(mm, p4dp, addr);
if (!pudp)
goto abort;
pmdp = pmd_alloc(mm, pudp, addr);
if (!pmdp)
goto abort;
if (pmd_trans_huge(*pmdp) || pmd_devmap(*pmdp))
goto abort;
/*
* Use pte_alloc() instead of pte_alloc_map(). We can't run
* pte_offset_map() on pmds where a huge pmd might be created
* from a different thread.
*
* pte_alloc_map() is safe to use under mmap_write_lock(mm) or when
* parallel threads are excluded by other means.
*
* Here we only have mmap_read_lock(mm).
*/
if (pte_alloc(mm, pmdp))
goto abort;
/* See the comment in pte_alloc_one_map() */
if (unlikely(pmd_trans_unstable(pmdp)))
goto abort;
if (unlikely(anon_vma_prepare(vma)))
goto abort;
if (mem_cgroup_charge(page, vma->vm_mm, GFP_KERNEL))
goto abort;
/*
* The memory barrier inside __SetPageUptodate makes sure that
* preceding stores to the page contents become visible before
* the set_pte_at() write.
*/
__SetPageUptodate(page);
if (is_zone_device_page(page)) {
if (is_device_private_page(page)) {
swp_entry_t swp_entry;
swp_entry = make_device_private_entry(page, vma->vm_flags & VM_WRITE);
entry = swp_entry_to_pte(swp_entry);
} else {
/*
* For now we only support migrating to un-addressable
* device memory.
*/
pr_warn_once("Unsupported ZONE_DEVICE page type.\n");
goto abort;
}
} else {
entry = mk_pte(page, vma->vm_page_prot);
if (vma->vm_flags & VM_WRITE)
entry = pte_mkwrite(pte_mkdirty(entry));
}
ptep = pte_offset_map_lock(mm, pmdp, addr, &ptl);
if (check_stable_address_space(mm))
goto unlock_abort;
if (pte_present(*ptep)) {
unsigned long pfn = pte_pfn(*ptep);
if (!is_zero_pfn(pfn))
goto unlock_abort;
flush = true;
} else if (!pte_none(*ptep))
goto unlock_abort;
/*
* Check for userfaultfd but do not deliver the fault. Instead,
* just back off.
*/
if (userfaultfd_missing(vma))
goto unlock_abort;
inc_mm_counter(mm, MM_ANONPAGES);
page_add_new_anon_rmap(page, vma, addr, false);
if (!is_zone_device_page(page))
lru_cache_add_inactive_or_unevictable(page, vma);
get_page(page);
if (flush) {
flush_cache_page(vma, addr, pte_pfn(*ptep));
ptep_clear_flush_notify(vma, addr, ptep);
set_pte_at_notify(mm, addr, ptep, entry);
update_mmu_cache(vma, addr, ptep);
} else {
/* No need to invalidate - it was non-present before */
set_pte_at(mm, addr, ptep, entry);
update_mmu_cache(vma, addr, ptep);
}
pte_unmap_unlock(ptep, ptl);
*src = MIGRATE_PFN_MIGRATE;
return;
unlock_abort:
pte_unmap_unlock(ptep, ptl);
abort:
*src &= ~MIGRATE_PFN_MIGRATE;
}
/**
* migrate_vma_pages() - migrate meta-data from src page to dst page
* @migrate: migrate struct containing all migration information
*
* This migrates struct page meta-data from source struct page to destination
* struct page. This effectively finishes the migration from source page to the
* destination page.
*/
void migrate_vma_pages(struct migrate_vma *migrate)
{
const unsigned long npages = migrate->npages;
const unsigned long start = migrate->start;
struct mmu_notifier_range range;
unsigned long addr, i;
bool notified = false;
for (i = 0, addr = start; i < npages; addr += PAGE_SIZE, i++) {
struct page *newpage = migrate_pfn_to_page(migrate->dst[i]);
struct page *page = migrate_pfn_to_page(migrate->src[i]);
struct address_space *mapping;
int r;
if (!newpage) {
migrate->src[i] &= ~MIGRATE_PFN_MIGRATE;
continue;
}
if (!page) {
if (!(migrate->src[i] & MIGRATE_PFN_MIGRATE))
continue;
if (!notified) {
notified = true;
mmu_notifier_range_init(&range,
MMU_NOTIFY_CLEAR, 0,
NULL,
migrate->vma->vm_mm,
addr, migrate->end);
mmu_notifier_invalidate_range_start(&range);
}
migrate_vma_insert_page(migrate, addr, newpage,
&migrate->src[i],
&migrate->dst[i]);
continue;
}
mapping = page_mapping(page);
if (is_zone_device_page(newpage)) {
if (is_device_private_page(newpage)) {
/*
* For now only support private anonymous when
* migrating to un-addressable device memory.
*/
if (mapping) {
migrate->src[i] &= ~MIGRATE_PFN_MIGRATE;
continue;
}
} else {
/*
* Other types of ZONE_DEVICE page are not
* supported.
*/
migrate->src[i] &= ~MIGRATE_PFN_MIGRATE;
continue;
}
}
r = migrate_page(mapping, newpage, page, MIGRATE_SYNC_NO_COPY);
if (r != MIGRATEPAGE_SUCCESS)
migrate->src[i] &= ~MIGRATE_PFN_MIGRATE;
}
/*
* No need to double call mmu_notifier->invalidate_range() callback as
* the above ptep_clear_flush_notify() inside migrate_vma_insert_page()
* did already call it.
*/
if (notified)
mmu_notifier_invalidate_range_only_end(&range);
}
EXPORT_SYMBOL(migrate_vma_pages);
/**
* migrate_vma_finalize() - restore CPU page table entry
* @migrate: migrate struct containing all migration information
*
* This replaces the special migration pte entry with either a mapping to the
* new page if migration was successful for that page, or to the original page
* otherwise.
*
* This also unlocks the pages and puts them back on the lru, or drops the extra
* refcount, for device pages.
*/
void migrate_vma_finalize(struct migrate_vma *migrate)
{
const unsigned long npages = migrate->npages;
unsigned long i;
for (i = 0; i < npages; i++) {
struct page *newpage = migrate_pfn_to_page(migrate->dst[i]);
struct page *page = migrate_pfn_to_page(migrate->src[i]);
if (!page) {
if (newpage) {
unlock_page(newpage);
put_page(newpage);
}
continue;
}
if (!(migrate->src[i] & MIGRATE_PFN_MIGRATE) || !newpage) {
if (newpage) {
unlock_page(newpage);
put_page(newpage);
}
newpage = page;
}
remove_migration_ptes(page, newpage, false);
unlock_page(page);
if (is_zone_device_page(page))
put_page(page);
else
putback_lru_page(page);
if (newpage != page) {
unlock_page(newpage);
if (is_zone_device_page(newpage))
put_page(newpage);
else
putback_lru_page(newpage);
}
}
}
EXPORT_SYMBOL(migrate_vma_finalize);
#endif /* CONFIG_DEVICE_PRIVATE */