Files
android_kernel_fxtec_sm6115/kernel/time/alarmtimer.c
Thomas Turner 23ea704e18 Merge tag 'v4.19.325-cip132' of https://git.kernel.org/pub/scm/linux/kernel/git/cip/linux-cip into android13-4.19-kona
version 4.19.325-cip132

* tag 'v4.19.325-cip132' of https://git.kernel.org/pub/scm/linux/kernel/git/cip/linux-cip:
  CIP: Bump version suffix to -cip132 after merge from cip/linux-4.19.y-st tree
  Update localversion-st, tree is up-to-date with 5.10.254.
  x86/CPU: Fix FPDSS on Zen1
  seg6: separate dst_cache for input and output paths in seg6 lwtunnel
  netfilter: nft_ct: fix use-after-free in timeout object destroy
  apparmor: fix differential encoding verification
  apparmor: fix missing bounds check on DEFAULT table in verify_dfa()
  ext4: convert inline data to extents when truncate exceeds inline size
  virtio_net: Fix UAF on dst_ops when IFF_XMIT_DST_RELEASE is cleared and napi_tx is false
  ipv6: fix NULL pointer deref in ip6_rt_get_dev_rcu()
  crypto: af_alg - Fix page reassignment overflow in af_alg_pull_tsgl
  crypto: authencesn - Fix src offset when decrypting in-place
  crypto: authencesn - Do not place hiseq at end of dst for out-of-place decryption
  crypto: authenc - use memcpy_sglist() instead of null skcipher
  crypto: algif_aead - snapshot IV for async AEAD requests
  crypto: algif_aead - Revert to operating out-of-place
  crypto: algif_aead - use memcpy_sglist() instead of null skcipher
  crypto: doc - fix kernel-doc notation in chacha.c and af_alg.c
  Buffer overflow in drivers/xen/sys-hypervisor.c
  xen/privcmd: fix double free via VMA splitting
  crypto: algif_aead - Fix minimum RX size check for decryption
  crypto: scatterwalk - Backport memcpy_sglist()
  batman-adv: avoid OGM aggregation when skb tailroom is insufficient
  device property: Check fwnode->secondary when finding properties
  device property: Check fwnode->secondary in fwnode_graph_get_next_endpoint()
  device property: Retrieve fwnode from of_node via accessor
  media: device property: Return true in fwnode_device_is_available for NULL ops
  ext4: fix the might_sleep() warnings in kvfree()
  mm/huge_memory: fix folio isn't locked in softleaf_to_folio()
  usb: gadget: u_ether: Fix race between gether_disconnect and eth_stop
  usb: gadget: f_hid: move list and spinlock inits from bind to alloc
  net: rfkill: prevent unlimited numbers of rfkill events from being created
  cpufreq: governor: fix double free in cpufreq_dbs_governor_init() error path
  cpufreq: governor: Free dbs_data directly when gov->init() fails
  xen/privcmd: unregister xenstore notifier on module exit
  rxrpc: Fix key/keyring checks in setsockopt(RXRPC_SECURITY_KEY/KEYRING)
  net: stmmac: fix integer underflow in chain mode
  net: qualcomm: qca_uart: report the consumed byte on RX skb allocation failure
  mmc: vub300: fix NULL-deref on disconnect
  net: altera-tse: fix skb leak on DMA mapping error in tse_start_xmit()
  batman-adv: reject oversized global TT response buffers
  arm64: dts: hisilicon: hi3798cv200: Add missing dma-ranges
  arm64: dts: hisilicon: poplar: Correct PCIe reset GPIO polarity
  wifi: brcmsmac: Fix dma_free_coherent() size
  tipc: fix bc_ackers underflow on duplicate GRP_ACK_MSG
  apparmor: fix unprivileged local user can do privileged policy management
  apparmor: Fix double free of ns_name in aa_replace_profiles()
  apparmor: fix side-effect bug in match_char() macro usage
  apparmor: fix: limit the number of levels of policy namespaces
  apparmor: replace recursive profile removal with iterative approach
  apparmor: fix memory leak in verify_header
  apparmor: validate DFA start states are in bounds in unpack_pdb
  mm/rmap: fix two comments related to huge_pmd_unshare()
  mm/hugetlb: fix two comments related to huge_pmd_unshare()
  mm/hugetlb: make detecting shared pte more reliable
  Input: uinput - take event lock when submitting FF request "event"
  Input: uinput - fix circular locking dependency with ff-core
  xfrm_user: fix info leak in build_report()
  wifi: rt2x00usb: fix devres lifetime
  usb: gadget: f_uac1_legacy: validate control request size
  usb: gadget: dummy_hcd: fix premature URB completion when ZLP follows partial transfer
  USB: dummy-hcd: Fix locking/synchronization error
  vxlan: validate ND option lengths in vxlan_na_create
  comedi: me4000: Fix potential overrun of firmware buffer
  comedi: me_daq: Fix potential overrun of firmware buffer
  comedi: ni_atmio16d: Fix invalid clean-up after failed attach
  comedi: Reinit dev->spinlock between attachments to low-level drivers
  comedi: dt2815: add hardware detection to prevent crash
  bridge: br_nd_send: validate ND option lengths
  usb: ulpi: fix double free in ulpi_register_interface() error path
  usb: quirks: add DELAY_INIT quirk for another Silicon Motion flash drive
  iio: gyro: mpu3050: Fix out-of-sequence free_irq()
  iio: gyro: mpu3050: Move iio_device_register() to correct location
  iio: gyro: mpu3050: Fix irq resource leak
  iio: gyro: mpu3050: Fix incorrect free_irq() variable
  Input: xpad - add support for Razer Wolverine V3 Pro
  USB: core: add NO_LPM quirk for Razer Kiyo Pro webcam
  USB: serial: option: add support for Rolling Wireless RW135R-GL
  USB: serial: io_edgeport: add support for Blackbox IC135A
  drm/ast: dp501: Fix initialization of SCU2C
  MIPS: Fix the GCC version check for `__multi3' workaround
  Bluetooth: SMP: force responder MITM requirements before building the pairing response
  Bluetooth: SMP: derive legacy responder STK authentication from MITM state
  ALSA: ctxfi: Fix missing SPDIFI1 index handling
  ALSA: caiaq: fix stack out-of-bounds read in init_card
  USB: serial: option: add MeiG Smart SRM825WN
  drm/ioc32: stop speculation on the drm_compat_ioctl path
  media: dvb-frontends: w7090p: fix null-ptr-deref in w7090p_tuner_write_serpar and w7090p_tuner_read_serpar
  Revert "media: dvb-frontends: w7090p: fix null-ptr-deref in w7090p_tuner_write_serpar and w7090p_tuner_read_serpar"
  drm/vmwgfx: Add seqno waiter for sync_files
  Revert "drm/vmwgfx: Add seqno waiter for sync_files"
  ipv6: avoid overflows in ip6_datagram_send_ctl()
  net/sched: cls_flow: fix NULL pointer dereference on shared blocks
  net/sched: cls_fw: fix NULL pointer dereference on shared blocks
  net/x25: Fix overflow when accumulating packets
  net/x25: Fix potential double free of skb
  net: macb: properly unregister fixed rate clocks
  net: macb: fix clk handling on PCI glue driver removal
  Bluetooth: MGMT: validate LTK enc_size on load
  netfilter: x_tables: restrict xt_check_match/xt_check_target extensions for NFPROTO_ARP
  netfilter: ctnetlink: zero expect NAT fields when CTA_EXPECT_NAT absent
  netfilter: nf_conntrack_helper: pass helper to expect cleanup
  netfilter: ipset: use nla_strcmp for IPSET_ATTR_NAME attr
  netfilter: x_tables: ensure names are nul-terminated
  netfilter: nfnetlink_log: account for netlink header size
  net: ipv6: flowlabel: defer exclusive option free until RCU teardown
  bpf: Fix regsafe() for pointers to packet
  net: xilinx: axienet: Correct BD length masks to match AXIDMA IP spec
  ipv6: prevent possible UaF in addrconf_permanent_addr()
  net/sched: sch_hfsc: fix divide-by-zero in rtsc_min()
  bridge: br_nd_send: linearize skb before parsing ND options
  ip6_tunnel: clear skb2->cb[] in ip4ip6_err()
  ipv6: icmp: clear skb2->cb[] in ip6_err_gen_icmpv6_unreach()
  tg3: Fix race for querying speed/duplex
  net: ipv6: ndisc: fix ndisc_ra_useropt to initialize nduseropt_padX fields to zero to prevent an info-leak
  crypto: af-alg - fix NULL pointer dereference in scatterwalk
  HID: multitouch: Check to ensure report responses match the request
  atm: lec: fix use-after-free in sock_def_readable()
  HID: wacom: fix out-of-bounds read in wacom_intuos_bt_irq
  dmaengine: xilinx_dma: Fix reset related timeout with two-channel AXIDMA
  dmaengine: xilinx_dma: Program interrupt delay timeout
  btrfs: fix lost error when running device stats on multiple devices fs
  btrfs: fix super block offset in error message in btrfs_validate_super()
  dmaengine: xilinx: xilinx_dma: Fix residue calculation for cyclic DMA
  dmaengine: xilinx: xilinx_dma: Fix dma_device directions
  ext4: reject mount if bigalloc with s_first_data_block != 0
  ext4: avoid allocate block from corrupted group in ext4_mb_find_by_goal()
  ext4: make recently_deleted() properly work with lazy itable initialization
  scsi: ses: Handle positive SCSI error from ses_recv_diag()
  scsi: ibmvfc: Fix OOB access in ibmvfc_discover_targets_done()
  alarmtimer: Fix argument order in alarm_timer_forward()
  cpufreq: conservative: Reset requested_freq on limits change
  s390/barrier: Make array_index_mask_nospec() __always_inline
  sysctl: fix uninitialized variable in proc_do_large_bitmap
  ACPICA: Allow address_space_handler Install and _REG execution as 2 separate steps
  ACPICA: include/acpi/acpixf.h: Fix indentation
  drm/i915/gmbus: fix spurious timeout on 512-byte burst reads
  scsi: scsi_transport_sas: Fix the maximum channel scanning issue
  RDMA/rw: Fall back to direct SGE on MR pool exhaustion
  net: macb: use the current queue number for stats
  netfilter: nf_conntrack_sip: fix use of uninitialized rtp_addr in process_sdp
  netfilter: ip6t_rt: reject oversized addrnr in rt_mt6_check()
  netfilter: nfnetlink_log: fix uninitialized padding leak in NFULA_PAYLOAD
  Bluetooth: L2CAP: Fix ERTM re-init and zero pdu_len infinite loop
  net: fix fanout UAF in packet_release() via NETDEV_UP race
  rtnetlink: count IFLA_INFO_SLAVE_KIND in if_nlmsg_size
  openvswitch: validate MPLS set/set_masked payload length
  net: openvswitch: Avoid releasing netdev before teardown completes
  pinctrl: mediatek: common: Fix probe failure for devices without EINT
  Bluetooth: L2CAP: Fix null-ptr-deref on l2cap_sock_ready_cb
  Bluetooth: hci_ll: Fix firmware leak on error path
  Bluetooth: L2CAP: Validate PDU length before reading SDU length in l2cap_ecred_data_rcv()
  af_key: validate families in pfkey_send_migrate()
  xfrm: call xdo_dev_state_delete during state update
  dma-buf: Include ioctl.h in UAPI header
  xen/privcmd: restrict usage in unprivileged domU
  i2c: fsi: Fix a potential leak in fsi_i2c_probe()
  icmp: fix NULL pointer dereference in icmp_tag_validation()
  nfnetlink_osf: validate individual option lengths in fingerprints
  net: bonding: fix NULL deref in bond_debug_rlb_hash_show
  udp_tunnel: fix NULL deref caused by udp_sock_create6 when CONFIG_IPV6=n
  net: macb: fix uninitialized rx_fs_lock
  wifi: wlcore: Return -ENOMEM instead of -EAGAIN if there is not enough headroom
  wifi: mac80211: fix NULL deref in mesh_matches_local()
  PM: runtime: Fix a race condition related to device removal
  net: bcmgenet: increase WoL poll timeout
  netfilter: nf_conntrack_h323: check for zero length in DecodeQ931()
  netfilter: xt_time: use unsigned int for monthday bit shift
  netfilter: xt_CT: drop pending enqueued packets on template removal
  netfilter: nf_conntrack_h323: fix OOB read in decode_int() CONS case
  netfilter: nf_conntrack_sip: fix Content-Length u32 truncation in sip_help_tcp()
  netfilter: ctnetlink: fix use-after-free in ctnetlink_dump_exp_ct()
  netfilter: ctnetlink: remove refcounting in expectation dumpers
  net/rose: fix NULL pointer dereference in rose_transmit_link on reconnect
  Bluetooth: HIDP: Fix possible UAF
  Bluetooth: SMP: make SM/PER/KDU/BI-04-C happy
  Bluetooth: LE L2CAP: Disconnect if sum of payload sizes exceed SDU
  Bluetooth: LE L2CAP: Disconnect if received packet's SDU exceeds IMTU
  staging: rtl8723bs: fix null dereference in find_network
  net/tcp-md5: Fix MAC comparison to be constant-time
  ALSA: pcm: fix wait_time calculations
  can: gs_usb: gs_can_open(): always configure bitrates before starting device
  usb: gadget: f_tcm: Fix NULL pointer dereferences in nexus handling
  nfsd: fix heap overflow in NFSv4.0 LOCK replay cache
  arm64: mm: Add PTE_DIRTY back to PAGE_KERNEL* to fix kexec/hibernation
  smb: client: fix iface port assignment in parse_server_interfaces
  iio: light: bh1780: fix PM runtime leak on error path
  tracing: Fix syscall events activation by ensuring refcount hits zero
  s390/xor: Fix xor_xc_2() inline assembly constraints
  drm/amd/display: Use GFP_ATOMIC in dc_create_stream_for_sink
  smb: client: Don't log plaintext credentials in cifs_set_cifscreds
  wifi: mac80211: fix NULL pointer dereference in mesh_rx_csa_frame()
  wifi: libertas: fix use-after-free in lbs_free_adapter()
  ext4: fix dirtyclusters double decrement on fs shutdown
  ext4: drop extent cache when splitting extent fails
  drm/exynos: vidi: use priv->vidi_dev for ctx lookup in vidi_connection_ioctl()
  net: Handle napi_schedule() calls from non-interrupt
  drm/radeon: apply state adjust rules to some additional HAINAN vairants
  serial: 8250: Add late synchronize_irq() to shutdown to handle DW UART BUSY
  Bluetooth: L2CAP: Validate L2CAP_INFO_RSP payload length before access
  net: macb: fix use-after-free access to PTP clock
  nvdimm/bus: Fix potential use after free in asynchronous initialization
  iio: chemical: bme680: Fix measurement wait duration calculation
  iio: potentiometer: mcp4131: fix double application of wiper shift
  iio: dac: ds4424: reject -128 RAW value
  btrfs: abort transaction on failure to update root in the received subvol ioctl
  x86/apic: Disable x2apic on resume if the kernel expects so
  drm/amdgpu: Fix use-after-free race in VM acquire
  net: ethernet: arc: emac: quiesce interrupts before requesting IRQ
  net: ncsi: fix skb leak in error paths
  parisc: Fix initial page table creation for boot
  nouveau/dpcd: return EBUSY for aux xfer if the device is asleep
  parisc: Increase initial mapping to 64 MB with KALLSYMS
  batman-adv: Avoid double-rtnl_lock ELP metric worker
  media: dvb-net: fix OOB access in ULE extension header tables
  staging: rtl8723bs: fix potential out-of-bounds read in rtw_restruct_wmm_ie
  libceph: Fix potential out-of-bounds access in ceph_handle_auth_reply()
  mmc: mmci: Fix device_node reference leak in of_get_dml_pipe_index()
  usb: image: mdc800: kill download URB on timeout
  usb: mdc800: handle signal and read racing
  usb: class: cdc-wdm: fix reordering issue in read code path
  USB: usbcore: Introduce usb_bulk_msg_killable()
  usb: misc: uss720: properly clean up reference in uss720_probe()
  usb: yurex: fix race in probe
  usb: xhci: Fix memory leak in xhci_disable_slot()
  usb/core/quirks: Add Huawei ME906S-device to wakeup quirk
  net: usb: lan78xx: skip LTM configuration for LAN7850
  net: usb: lan78xx: fix silent drop of packets with checksum errors
  cgroup: fix race between task migration and iteration
  e1000/e1000e: Fix leak in DMA error cleanup
  i40e: fix src IP mask checks and memcpy argument names in cloud filter
  nvme-pci: Fix slab-out-of-bounds in nvme_dbbuf_set
  sched: idle: Make skipping governor callbacks more consistent
  netfilter: nfnetlink_cthelper: fix OOB read in nfnl_cthelper_dump_table()
  netfilter: nfnetlink_queue: fix entry leak in bridge verdict error path
  netfilter: x_tables: guard option walkers against 1-byte tail reads
  can: hi311x: hi3110_open(): add check for hi3110_power_enable() return value
  serial: caif: hold tty->link reference in ldisc_open and ser_release
  net/sched: teql: fix NULL pointer dereference in iptunnel_xmit on TEQL slave xmit
  powerpc: 83xx: km83xx: Fix keymile vendor prefix
  remoteproc: sysmon: Correct subsys_name_len type in QMI request
  powerpc/uaccess: Fix inline assembly for clang build on PPC32
  scsi: ses: Fix devices attaching to different hosts
  ACPI: OSI: Add DMI quirk for Acer Aspire One D255
  unshare: fix unshare_fs() handling
  ACPI: PM: Save NVS memory on Lenovo G70-35
  scsi: storvsc: Fix scheduling while atomic on PREEMPT_RT
  net: vxlan: fix nd_tbl NULL dereference when IPv6 is disabled
  net: bridge: fix nd_tbl NULL dereference when IPv6 is disabled
  nfc: rawsock: cancel tx_work before socket teardown
  nfc: nci: clear NCI_DATA_EXCHANGE before calling completion callback
  nfc: nci: free skb on nci_transceive early error paths
  net: nfc: nci: Fix zero-length proprietary notifications
  amd-xgbe: fix sleep while atomic on suspend/resume
  xen/acpi-processor: fix _CST detection using undersized evaluation buffer
  wifi: wlcore: Fix a locking bug
  can: bcm: fix locking for bcm_op runtime updates
  atm: lec: fix null-ptr-deref in lec_arp_clear_vccs
  platform/x86: thinkpad_acpi: Fix errors reading battery thresholds
  drbd: fix "LOGIC BUG" in drbd_al_begin_io_nonblock()
  Squashfs: check metadata block offset is within range
  wifi: radiotap: reject radiotap with unknown bits
  ALSA: usb-audio: Use correct version for UAC3 header validation
  can: ucan: Fix infinite loop from zero-length messages
  can: ems_usb: ems_usb_read_bulk_callback(): check the proper length of a message
  net: usb: pegasus: validate USB endpoints
  net: usb: kalmia: validate USB endpoints
  net: usb: kaweth: validate USB endpoints
  nfc: pn533: properly drop the usb interface reference on disconnect
  media: dvb-core: fix wrong reinitialization of ringbuffer on reopen
  net: arcnet: com20020-pci: fix support for 2.5Mbit cards
  ALSA: hda/conexant: Add quirk for HP ZBook Studio G4
  clk: tegra: tegra124-emc: fix device leak on set_rate()
  drm/tegra: dsi: fix device leak on probe
  ARM: omap2: Fix reference count leaks in omap_control_init()
  ARM: OMAP2+: add missing of_node_put before break and return
  ARM: clean up the memset64() C wrapper

Change-Id: If58eb7898e90d049cd97232a5f2c1fc971671b1f
2026-05-12 18:00:02 +01:00

930 lines
23 KiB
C

/*
* Alarmtimer interface
*
* This interface provides a timer which is similarto hrtimers,
* but triggers a RTC alarm if the box is suspend.
*
* This interface is influenced by the Android RTC Alarm timer
* interface.
*
* Copyright (C) 2010 IBM Corperation
*
* Author: John Stultz <john.stultz@linaro.org>
*
* This program is free software; you can redistribute it and/or modify
* it under the terms of the GNU General Public License version 2 as
* published by the Free Software Foundation.
*/
#include <linux/time.h>
#include <linux/hrtimer.h>
#include <linux/timerqueue.h>
#include <linux/rtc.h>
#include <linux/sched/signal.h>
#include <linux/sched/debug.h>
#include <linux/alarmtimer.h>
#include <linux/mutex.h>
#include <linux/platform_device.h>
#include <linux/posix-timers.h>
#include <linux/workqueue.h>
#include <linux/freezer.h>
#include <linux/compat.h>
#include <linux/module.h>
#include "posix-timers.h"
#define CREATE_TRACE_POINTS
#include <trace/events/alarmtimer.h>
/**
* struct alarm_base - Alarm timer bases
* @lock: Lock for syncrhonized access to the base
* @timerqueue: Timerqueue head managing the list of events
* @gettime: Function to read the time correlating to the base
* @base_clockid: clockid for the base
*/
static struct alarm_base {
spinlock_t lock;
struct timerqueue_head timerqueue;
ktime_t (*gettime)(void);
clockid_t base_clockid;
} alarm_bases[ALARM_NUMTYPE];
#if defined(CONFIG_POSIX_TIMERS) || defined(CONFIG_RTC_CLASS)
/* freezer information to handle clock_nanosleep triggered wakeups */
static enum alarmtimer_type freezer_alarmtype;
static ktime_t freezer_expires;
static ktime_t freezer_delta;
static DEFINE_SPINLOCK(freezer_delta_lock);
#endif
#ifdef CONFIG_RTC_CLASS
static struct wakeup_source *ws;
/* rtc timer and device for setting alarm wakeups at suspend */
static struct rtc_timer rtctimer;
static struct rtc_device *rtcdev;
static DEFINE_SPINLOCK(rtcdev_lock);
/**
* alarmtimer_get_rtcdev - Return selected rtcdevice
*
* This function returns the rtc device to use for wakealarms.
* If one has not already been chosen, it checks to see if a
* functional rtc device is available.
*/
struct rtc_device *alarmtimer_get_rtcdev(void)
{
unsigned long flags;
struct rtc_device *ret;
spin_lock_irqsave(&rtcdev_lock, flags);
ret = rtcdev;
spin_unlock_irqrestore(&rtcdev_lock, flags);
return ret;
}
EXPORT_SYMBOL_GPL(alarmtimer_get_rtcdev);
static int alarmtimer_rtc_add_device(struct device *dev,
struct class_interface *class_intf)
{
unsigned long flags;
struct rtc_device *rtc = to_rtc_device(dev);
struct wakeup_source *__ws;
struct platform_device *pdev;
int ret = 0;
if (rtcdev)
return -EBUSY;
if (!rtc->ops->set_alarm)
return -1;
if (!device_may_wakeup(rtc->dev.parent))
return -1;
__ws = wakeup_source_register(dev, "alarmtimer");
pdev = platform_device_register_data(dev, "alarmtimer",
PLATFORM_DEVID_AUTO, NULL, 0);
spin_lock_irqsave(&rtcdev_lock, flags);
if (__ws && !IS_ERR(pdev) && !rtcdev) {
if (!try_module_get(rtc->owner)) {
ret = -1;
goto unlock;
}
rtcdev = rtc;
/* hold a reference so it doesn't go away */
get_device(dev);
ws = __ws;
__ws = NULL;
pdev = NULL;
} else {
ret = -1;
}
unlock:
spin_unlock_irqrestore(&rtcdev_lock, flags);
platform_device_unregister(pdev);
wakeup_source_unregister(__ws);
return ret;
}
static inline void alarmtimer_rtc_timer_init(void)
{
rtc_timer_init(&rtctimer, NULL, NULL);
}
static struct class_interface alarmtimer_rtc_interface = {
.add_dev = &alarmtimer_rtc_add_device,
};
static int alarmtimer_rtc_interface_setup(void)
{
alarmtimer_rtc_interface.class = rtc_class;
return class_interface_register(&alarmtimer_rtc_interface);
}
static void alarmtimer_rtc_interface_remove(void)
{
class_interface_unregister(&alarmtimer_rtc_interface);
}
#else
struct rtc_device *alarmtimer_get_rtcdev(void)
{
return NULL;
}
#define rtcdev (NULL)
static inline int alarmtimer_rtc_interface_setup(void) { return 0; }
static inline void alarmtimer_rtc_interface_remove(void) { }
static inline void alarmtimer_rtc_timer_init(void) { }
#endif
/**
* alarmtimer_enqueue - Adds an alarm timer to an alarm_base timerqueue
* @base: pointer to the base where the timer is being run
* @alarm: pointer to alarm being enqueued.
*
* Adds alarm to a alarm_base timerqueue
*
* Must hold base->lock when calling.
*/
static void alarmtimer_enqueue(struct alarm_base *base, struct alarm *alarm)
{
if (alarm->state & ALARMTIMER_STATE_ENQUEUED)
timerqueue_del(&base->timerqueue, &alarm->node);
timerqueue_add(&base->timerqueue, &alarm->node);
alarm->state |= ALARMTIMER_STATE_ENQUEUED;
}
/**
* alarmtimer_dequeue - Removes an alarm timer from an alarm_base timerqueue
* @base: pointer to the base where the timer is running
* @alarm: pointer to alarm being removed
*
* Removes alarm to a alarm_base timerqueue
*
* Must hold base->lock when calling.
*/
static void alarmtimer_dequeue(struct alarm_base *base, struct alarm *alarm)
{
if (!(alarm->state & ALARMTIMER_STATE_ENQUEUED))
return;
timerqueue_del(&base->timerqueue, &alarm->node);
alarm->state &= ~ALARMTIMER_STATE_ENQUEUED;
}
/**
* alarmtimer_fired - Handles alarm hrtimer being fired.
* @timer: pointer to hrtimer being run
*
* When a alarm timer fires, this runs through the timerqueue to
* see which alarms expired, and runs those. If there are more alarm
* timers queued for the future, we set the hrtimer to fire when
* when the next future alarm timer expires.
*/
static enum hrtimer_restart alarmtimer_fired(struct hrtimer *timer)
{
struct alarm *alarm = container_of(timer, struct alarm, timer);
struct alarm_base *base = &alarm_bases[alarm->type];
unsigned long flags;
int ret = HRTIMER_NORESTART;
int restart = ALARMTIMER_NORESTART;
spin_lock_irqsave(&base->lock, flags);
alarmtimer_dequeue(base, alarm);
spin_unlock_irqrestore(&base->lock, flags);
if (alarm->function)
restart = alarm->function(alarm, base->gettime());
spin_lock_irqsave(&base->lock, flags);
if (restart != ALARMTIMER_NORESTART) {
hrtimer_set_expires(&alarm->timer, alarm->node.expires);
alarmtimer_enqueue(base, alarm);
ret = HRTIMER_RESTART;
}
spin_unlock_irqrestore(&base->lock, flags);
trace_alarmtimer_fired(alarm, base->gettime());
return ret;
}
ktime_t alarm_expires_remaining(const struct alarm *alarm)
{
struct alarm_base *base = &alarm_bases[alarm->type];
return ktime_sub(alarm->node.expires, base->gettime());
}
EXPORT_SYMBOL_GPL(alarm_expires_remaining);
#ifdef CONFIG_RTC_CLASS
/**
* alarmtimer_suspend - Suspend time callback
* @dev: unused
* @state: unused
*
* When we are going into suspend, we look through the bases
* to see which is the soonest timer to expire. We then
* set an rtc timer to fire that far into the future, which
* will wake us from suspend.
*/
static int alarmtimer_suspend(struct device *dev)
{
ktime_t min, now, expires;
int i, ret, type;
struct rtc_device *rtc;
unsigned long flags;
struct rtc_time tm;
spin_lock_irqsave(&freezer_delta_lock, flags);
min = freezer_delta;
expires = freezer_expires;
type = freezer_alarmtype;
freezer_delta = 0;
spin_unlock_irqrestore(&freezer_delta_lock, flags);
rtc = alarmtimer_get_rtcdev();
/* If we have no rtcdev, just return */
if (!rtc)
return 0;
/* Find the soonest timer to expire*/
for (i = 0; i < ALARM_NUMTYPE; i++) {
struct alarm_base *base = &alarm_bases[i];
struct timerqueue_node *next;
ktime_t delta;
spin_lock_irqsave(&base->lock, flags);
next = timerqueue_getnext(&base->timerqueue);
spin_unlock_irqrestore(&base->lock, flags);
if (!next)
continue;
delta = ktime_sub(next->expires, base->gettime());
if (!min || (delta < min)) {
expires = next->expires;
min = delta;
type = i;
}
}
if (min == 0)
return 0;
if (ktime_to_ns(min) < 2 * NSEC_PER_SEC) {
__pm_wakeup_event(ws, 2 * MSEC_PER_SEC);
return -EBUSY;
}
trace_alarmtimer_suspend(expires, type);
/* Setup an rtc timer to fire that far in the future */
rtc_timer_cancel(rtc, &rtctimer);
rtc_read_time(rtc, &tm);
now = rtc_tm_to_ktime(tm);
now = ktime_add(now, min);
/* Set alarm, if in the past reject suspend briefly to handle */
ret = rtc_timer_start(rtc, &rtctimer, now, 0);
if (ret < 0)
__pm_wakeup_event(ws, MSEC_PER_SEC);
return ret;
}
static int alarmtimer_resume(struct device *dev)
{
struct rtc_device *rtc;
rtc = alarmtimer_get_rtcdev();
if (rtc)
rtc_timer_cancel(rtc, &rtctimer);
return 0;
}
#else
static int alarmtimer_suspend(struct device *dev)
{
return 0;
}
static int alarmtimer_resume(struct device *dev)
{
return 0;
}
#endif
static void
__alarm_init(struct alarm *alarm, enum alarmtimer_type type,
enum alarmtimer_restart (*function)(struct alarm *, ktime_t))
{
timerqueue_init(&alarm->node);
alarm->timer.function = alarmtimer_fired;
alarm->function = function;
alarm->type = type;
alarm->state = ALARMTIMER_STATE_INACTIVE;
}
/**
* alarm_init - Initialize an alarm structure
* @alarm: ptr to alarm to be initialized
* @type: the type of the alarm
* @function: callback that is run when the alarm fires
*/
void alarm_init(struct alarm *alarm, enum alarmtimer_type type,
enum alarmtimer_restart (*function)(struct alarm *, ktime_t))
{
hrtimer_init(&alarm->timer, alarm_bases[type].base_clockid,
HRTIMER_MODE_ABS);
__alarm_init(alarm, type, function);
}
EXPORT_SYMBOL_GPL(alarm_init);
/**
* alarm_start - Sets an absolute alarm to fire
* @alarm: ptr to alarm to set
* @start: time to run the alarm
*/
void alarm_start(struct alarm *alarm, ktime_t start)
{
struct alarm_base *base = &alarm_bases[alarm->type];
unsigned long flags;
spin_lock_irqsave(&base->lock, flags);
alarm->node.expires = start;
alarmtimer_enqueue(base, alarm);
hrtimer_start(&alarm->timer, alarm->node.expires, HRTIMER_MODE_ABS);
spin_unlock_irqrestore(&base->lock, flags);
trace_alarmtimer_start(alarm, base->gettime());
}
EXPORT_SYMBOL_GPL(alarm_start);
/**
* alarm_start_relative - Sets a relative alarm to fire
* @alarm: ptr to alarm to set
* @start: time relative to now to run the alarm
*/
void alarm_start_relative(struct alarm *alarm, ktime_t start)
{
struct alarm_base *base = &alarm_bases[alarm->type];
start = ktime_add_safe(start, base->gettime());
alarm_start(alarm, start);
}
EXPORT_SYMBOL_GPL(alarm_start_relative);
void alarm_restart(struct alarm *alarm)
{
struct alarm_base *base = &alarm_bases[alarm->type];
unsigned long flags;
spin_lock_irqsave(&base->lock, flags);
hrtimer_set_expires(&alarm->timer, alarm->node.expires);
hrtimer_restart(&alarm->timer);
alarmtimer_enqueue(base, alarm);
spin_unlock_irqrestore(&base->lock, flags);
}
EXPORT_SYMBOL_GPL(alarm_restart);
/**
* alarm_try_to_cancel - Tries to cancel an alarm timer
* @alarm: ptr to alarm to be canceled
*
* Returns 1 if the timer was canceled, 0 if it was not running,
* and -1 if the callback was running
*/
int alarm_try_to_cancel(struct alarm *alarm)
{
struct alarm_base *base = &alarm_bases[alarm->type];
unsigned long flags;
int ret;
spin_lock_irqsave(&base->lock, flags);
ret = hrtimer_try_to_cancel(&alarm->timer);
if (ret >= 0)
alarmtimer_dequeue(base, alarm);
spin_unlock_irqrestore(&base->lock, flags);
trace_alarmtimer_cancel(alarm, base->gettime());
return ret;
}
EXPORT_SYMBOL_GPL(alarm_try_to_cancel);
/**
* alarm_cancel - Spins trying to cancel an alarm timer until it is done
* @alarm: ptr to alarm to be canceled
*
* Returns 1 if the timer was canceled, 0 if it was not active.
*/
int alarm_cancel(struct alarm *alarm)
{
for (;;) {
int ret = alarm_try_to_cancel(alarm);
if (ret >= 0)
return ret;
cpu_relax();
}
}
EXPORT_SYMBOL_GPL(alarm_cancel);
u64 alarm_forward(struct alarm *alarm, ktime_t now, ktime_t interval)
{
u64 overrun = 1;
ktime_t delta;
delta = ktime_sub(now, alarm->node.expires);
if (delta < 0)
return 0;
if (unlikely(delta >= interval)) {
s64 incr = ktime_to_ns(interval);
overrun = ktime_divns(delta, incr);
alarm->node.expires = ktime_add_ns(alarm->node.expires,
incr*overrun);
if (alarm->node.expires > now)
return overrun;
/*
* This (and the ktime_add() below) is the
* correction for exact:
*/
overrun++;
}
alarm->node.expires = ktime_add_safe(alarm->node.expires, interval);
return overrun;
}
EXPORT_SYMBOL_GPL(alarm_forward);
static u64 __alarm_forward_now(struct alarm *alarm, ktime_t interval, bool throttle)
{
struct alarm_base *base = &alarm_bases[alarm->type];
ktime_t now = base->gettime();
if (IS_ENABLED(CONFIG_HIGH_RES_TIMERS) && throttle) {
/*
* Same issue as with posix_timer_fn(). Timers which are
* periodic but the signal is ignored can starve the system
* with a very small interval. The real fix which was
* promised in the context of posix_timer_fn() never
* materialized, but someone should really work on it.
*
* To prevent DOS fake @now to be 1 jiffie out which keeps
* the overrun accounting correct but creates an
* inconsistency vs. timer_gettime(2).
*/
ktime_t kj = NSEC_PER_SEC / HZ;
if (interval < kj)
now = ktime_add(now, kj);
}
return alarm_forward(alarm, now, interval);
}
u64 alarm_forward_now(struct alarm *alarm, ktime_t interval)
{
return __alarm_forward_now(alarm, interval, false);
}
EXPORT_SYMBOL_GPL(alarm_forward_now);
#ifdef CONFIG_POSIX_TIMERS
static void alarmtimer_freezerset(ktime_t absexp, enum alarmtimer_type type)
{
struct alarm_base *base;
unsigned long flags;
ktime_t delta;
switch(type) {
case ALARM_REALTIME:
base = &alarm_bases[ALARM_REALTIME];
type = ALARM_REALTIME_FREEZER;
break;
case ALARM_BOOTTIME:
base = &alarm_bases[ALARM_BOOTTIME];
type = ALARM_BOOTTIME_FREEZER;
break;
default:
WARN_ONCE(1, "Invalid alarm type: %d\n", type);
return;
}
delta = ktime_sub(absexp, base->gettime());
spin_lock_irqsave(&freezer_delta_lock, flags);
if (!freezer_delta || (delta < freezer_delta)) {
freezer_delta = delta;
freezer_expires = absexp;
freezer_alarmtype = type;
}
spin_unlock_irqrestore(&freezer_delta_lock, flags);
}
/**
* clock2alarm - helper that converts from clockid to alarmtypes
* @clockid: clockid.
*/
static enum alarmtimer_type clock2alarm(clockid_t clockid)
{
if (clockid == CLOCK_REALTIME_ALARM)
return ALARM_REALTIME;
if (clockid == CLOCK_BOOTTIME_ALARM)
return ALARM_BOOTTIME;
return -1;
}
/**
* alarm_handle_timer - Callback for posix timers
* @alarm: alarm that fired
*
* Posix timer callback for expired alarm timers.
*/
static enum alarmtimer_restart alarm_handle_timer(struct alarm *alarm,
ktime_t now)
{
struct k_itimer *ptr = container_of(alarm, struct k_itimer,
it.alarm.alarmtimer);
enum alarmtimer_restart result = ALARMTIMER_NORESTART;
unsigned long flags;
int si_private = 0;
spin_lock_irqsave(&ptr->it_lock, flags);
ptr->it_active = 0;
if (ptr->it_interval)
si_private = ++ptr->it_requeue_pending;
if (posix_timer_event(ptr, si_private) && ptr->it_interval) {
/*
* Handle ignored signals and rearm the timer. This will go
* away once we handle ignored signals proper. Ensure that
* small intervals cannot starve the system.
*/
ptr->it_overrun += __alarm_forward_now(alarm, ptr->it_interval, true);
++ptr->it_requeue_pending;
ptr->it_active = 1;
result = ALARMTIMER_RESTART;
}
spin_unlock_irqrestore(&ptr->it_lock, flags);
return result;
}
/**
* alarm_timer_rearm - Posix timer callback for rearming timer
* @timr: Pointer to the posixtimer data struct
*/
static void alarm_timer_rearm(struct k_itimer *timr)
{
struct alarm *alarm = &timr->it.alarm.alarmtimer;
timr->it_overrun += alarm_forward_now(alarm, timr->it_interval);
alarm_start(alarm, alarm->node.expires);
}
/**
* alarm_timer_forward - Posix timer callback for forwarding timer
* @timr: Pointer to the posixtimer data struct
* @now: Current time to forward the timer against
*/
static s64 alarm_timer_forward(struct k_itimer *timr, ktime_t now)
{
struct alarm *alarm = &timr->it.alarm.alarmtimer;
return alarm_forward(alarm, now, timr->it_interval);
}
/**
* alarm_timer_remaining - Posix timer callback to retrieve remaining time
* @timr: Pointer to the posixtimer data struct
* @now: Current time to calculate against
*/
static ktime_t alarm_timer_remaining(struct k_itimer *timr, ktime_t now)
{
struct alarm *alarm = &timr->it.alarm.alarmtimer;
return ktime_sub(alarm->node.expires, now);
}
/**
* alarm_timer_try_to_cancel - Posix timer callback to cancel a timer
* @timr: Pointer to the posixtimer data struct
*/
static int alarm_timer_try_to_cancel(struct k_itimer *timr)
{
return alarm_try_to_cancel(&timr->it.alarm.alarmtimer);
}
/**
* alarm_timer_arm - Posix timer callback to arm a timer
* @timr: Pointer to the posixtimer data struct
* @expires: The new expiry time
* @absolute: Expiry value is absolute time
* @sigev_none: Posix timer does not deliver signals
*/
static void alarm_timer_arm(struct k_itimer *timr, ktime_t expires,
bool absolute, bool sigev_none)
{
struct alarm *alarm = &timr->it.alarm.alarmtimer;
struct alarm_base *base = &alarm_bases[alarm->type];
if (!absolute)
expires = ktime_add_safe(expires, base->gettime());
if (sigev_none)
alarm->node.expires = expires;
else
alarm_start(&timr->it.alarm.alarmtimer, expires);
}
/**
* alarm_clock_getres - posix getres interface
* @which_clock: clockid
* @tp: timespec to fill
*
* Returns the granularity of underlying alarm base clock
*/
static int alarm_clock_getres(const clockid_t which_clock, struct timespec64 *tp)
{
if (!alarmtimer_get_rtcdev())
return -EINVAL;
tp->tv_sec = 0;
tp->tv_nsec = hrtimer_resolution;
return 0;
}
/**
* alarm_clock_get - posix clock_get interface
* @which_clock: clockid
* @tp: timespec to fill.
*
* Provides the underlying alarm base time.
*/
static int alarm_clock_get(clockid_t which_clock, struct timespec64 *tp)
{
struct alarm_base *base = &alarm_bases[clock2alarm(which_clock)];
if (!alarmtimer_get_rtcdev())
return -EINVAL;
*tp = ktime_to_timespec64(base->gettime());
return 0;
}
/**
* alarm_timer_create - posix timer_create interface
* @new_timer: k_itimer pointer to manage
*
* Initializes the k_itimer structure.
*/
static int alarm_timer_create(struct k_itimer *new_timer)
{
enum alarmtimer_type type;
if (!alarmtimer_get_rtcdev())
return -EOPNOTSUPP;
if (!capable(CAP_WAKE_ALARM))
return -EPERM;
type = clock2alarm(new_timer->it_clock);
alarm_init(&new_timer->it.alarm.alarmtimer, type, alarm_handle_timer);
return 0;
}
/**
* alarmtimer_nsleep_wakeup - Wakeup function for alarm_timer_nsleep
* @alarm: ptr to alarm that fired
*
* Wakes up the task that set the alarmtimer
*/
static enum alarmtimer_restart alarmtimer_nsleep_wakeup(struct alarm *alarm,
ktime_t now)
{
struct task_struct *task = (struct task_struct *)alarm->data;
alarm->data = NULL;
if (task)
wake_up_process(task);
return ALARMTIMER_NORESTART;
}
/**
* alarmtimer_do_nsleep - Internal alarmtimer nsleep implementation
* @alarm: ptr to alarmtimer
* @absexp: absolute expiration time
*
* Sets the alarm timer and sleeps until it is fired or interrupted.
*/
static int alarmtimer_do_nsleep(struct alarm *alarm, ktime_t absexp,
enum alarmtimer_type type)
{
struct restart_block *restart;
alarm->data = (void *)current;
do {
set_current_state(TASK_INTERRUPTIBLE);
alarm_start(alarm, absexp);
if (likely(alarm->data))
schedule();
alarm_cancel(alarm);
} while (alarm->data && !signal_pending(current));
__set_current_state(TASK_RUNNING);
destroy_hrtimer_on_stack(&alarm->timer);
if (!alarm->data)
return 0;
if (freezing(current))
alarmtimer_freezerset(absexp, type);
restart = &current->restart_block;
if (restart->nanosleep.type != TT_NONE) {
struct timespec64 rmt;
ktime_t rem;
rem = ktime_sub(absexp, alarm_bases[type].gettime());
if (rem <= 0)
return 0;
rmt = ktime_to_timespec64(rem);
return nanosleep_copyout(restart, &rmt);
}
return -ERESTART_RESTARTBLOCK;
}
static void
alarm_init_on_stack(struct alarm *alarm, enum alarmtimer_type type,
enum alarmtimer_restart (*function)(struct alarm *, ktime_t))
{
hrtimer_init_on_stack(&alarm->timer, alarm_bases[type].base_clockid,
HRTIMER_MODE_ABS);
__alarm_init(alarm, type, function);
}
/**
* alarm_timer_nsleep_restart - restartblock alarmtimer nsleep
* @restart: ptr to restart block
*
* Handles restarted clock_nanosleep calls
*/
static long __sched alarm_timer_nsleep_restart(struct restart_block *restart)
{
enum alarmtimer_type type = restart->nanosleep.clockid;
ktime_t exp = restart->nanosleep.expires;
struct alarm alarm;
alarm_init_on_stack(&alarm, type, alarmtimer_nsleep_wakeup);
return alarmtimer_do_nsleep(&alarm, exp, type);
}
/**
* alarm_timer_nsleep - alarmtimer nanosleep
* @which_clock: clockid
* @flags: determins abstime or relative
* @tsreq: requested sleep time (abs or rel)
* @rmtp: remaining sleep time saved
*
* Handles clock_nanosleep calls against _ALARM clockids
*/
static int alarm_timer_nsleep(const clockid_t which_clock, int flags,
const struct timespec64 *tsreq)
{
enum alarmtimer_type type = clock2alarm(which_clock);
struct restart_block *restart = &current->restart_block;
struct alarm alarm;
ktime_t exp;
int ret = 0;
if (!alarmtimer_get_rtcdev())
return -EOPNOTSUPP;
if (flags & ~TIMER_ABSTIME)
return -EINVAL;
if (!capable(CAP_WAKE_ALARM))
return -EPERM;
alarm_init_on_stack(&alarm, type, alarmtimer_nsleep_wakeup);
exp = timespec64_to_ktime(*tsreq);
/* Convert (if necessary) to absolute time */
if (flags != TIMER_ABSTIME) {
ktime_t now = alarm_bases[type].gettime();
exp = ktime_add_safe(now, exp);
}
ret = alarmtimer_do_nsleep(&alarm, exp, type);
if (ret != -ERESTART_RESTARTBLOCK)
return ret;
/* abs timers don't set remaining time or restart */
if (flags == TIMER_ABSTIME)
return -ERESTARTNOHAND;
restart->nanosleep.clockid = type;
restart->nanosleep.expires = exp;
set_restart_fn(restart, alarm_timer_nsleep_restart);
return ret;
}
const struct k_clock alarm_clock = {
.clock_getres = alarm_clock_getres,
.clock_get = alarm_clock_get,
.timer_create = alarm_timer_create,
.timer_set = common_timer_set,
.timer_del = common_timer_del,
.timer_get = common_timer_get,
.timer_arm = alarm_timer_arm,
.timer_rearm = alarm_timer_rearm,
.timer_forward = alarm_timer_forward,
.timer_remaining = alarm_timer_remaining,
.timer_try_to_cancel = alarm_timer_try_to_cancel,
.nsleep = alarm_timer_nsleep,
};
#endif /* CONFIG_POSIX_TIMERS */
/* Suspend hook structures */
static const struct dev_pm_ops alarmtimer_pm_ops = {
.suspend = alarmtimer_suspend,
.resume = alarmtimer_resume,
};
static struct platform_driver alarmtimer_driver = {
.driver = {
.name = "alarmtimer",
.pm = &alarmtimer_pm_ops,
}
};
/**
* alarmtimer_init - Initialize alarm timer code
*
* This function initializes the alarm bases and registers
* the posix clock ids.
*/
static int __init alarmtimer_init(void)
{
int error;
int i;
alarmtimer_rtc_timer_init();
/* Initialize alarm bases */
alarm_bases[ALARM_REALTIME].base_clockid = CLOCK_REALTIME;
alarm_bases[ALARM_REALTIME].gettime = &ktime_get_real;
alarm_bases[ALARM_BOOTTIME].base_clockid = CLOCK_BOOTTIME;
alarm_bases[ALARM_BOOTTIME].gettime = &ktime_get_boottime;
for (i = 0; i < ALARM_NUMTYPE; i++) {
timerqueue_init_head(&alarm_bases[i].timerqueue);
spin_lock_init(&alarm_bases[i].lock);
}
error = alarmtimer_rtc_interface_setup();
if (error)
return error;
error = platform_driver_register(&alarmtimer_driver);
if (error)
goto out_if;
return 0;
out_if:
alarmtimer_rtc_interface_remove();
return error;
}
device_initcall(alarmtimer_init);