mirror of
git://git.kernel.org/pub/scm/linux/kernel/git/torvalds/linux.git
synced 2025-09-04 20:19:47 +08:00
Core
----
- Increase size limits for to-be-sent skb frag allocations. This
allows tun, tap devices and packet sockets to better cope with large
writes operations.
- Store netdevs in an xarray, to simplify iterating over netdevs.
- Refactor nexthop selection for multipath routes.
- Improve sched class lifetime handling.
- Add backup nexthop ID support for bridge.
- Implement drop reasons support in openvswitch.
- Several data races annotations and fixes.
- Constify the sk parameter of routing functions.
- Prepend kernel version to netconsole message.
Protocols
---------
- Implement support for TCP probing the peer being under memory
pressure.
- Remove hard coded limitation on IPv6 specific info placement
inside the socket struct.
- Get rid of sysctl_tcp_adv_win_scale and use an auto-estimated
per socket scaling factor.
- Scaling-up the IPv6 expired route GC via a separated list of
expiring routes.
- In-kernel support for the TLS alert protocol.
- Better support for UDP reuseport with connected sockets.
- Add NEXT-C-SID support for SRv6 End.X behavior, reducing the SR
header size.
- Get rid of additional ancillary per MPTCP connection struct socket.
- Implement support for BPF-based MPTCP packet schedulers.
- Format MPTCP subtests selftests results in TAP.
- Several new SMC 2.1 features including unique experimental options,
max connections per lgr negotiation, max links per lgr negotiation.
BPF
---
- Multi-buffer support in AF_XDP.
- Add multi uprobe BPF links for attaching multiple uprobes
and usdt probes, which is significantly faster and saves extra fds.
- Implement an fd-based tc BPF attach API (TCX) and BPF link support on
top of it.
- Add SO_REUSEPORT support for TC bpf_sk_assign.
- Support new instructions from cpu v4 to simplify the generated code and
feature completeness, for x86, arm64, riscv64.
- Support defragmenting IPv(4|6) packets in BPF.
- Teach verifier actual bounds of bpf_get_smp_processor_id()
and fix perf+libbpf issue related to custom section handling.
- Introduce bpf map element count and enable it for all program types.
- Add a BPF hook in sys_socket() to change the protocol ID
from IPPROTO_TCP to IPPROTO_MPTCP to cover migration for legacy.
- Introduce bpf_me_mcache_free_rcu() and fix OOM under stress.
- Add uprobe support for the bpf_get_func_ip helper.
- Check skb ownership against full socket.
- Support for up to 12 arguments in BPF trampoline.
- Extend link_info for kprobe_multi and perf_event links.
Netfilter
---------
- Speed-up process exit by aborting ruleset validation if a
fatal signal is pending.
- Allow NLA_POLICY_MASK to be used with BE16/BE32 types.
Driver API
----------
- Page pool optimizations, to improve data locality and cache usage.
- Introduce ndo_hwtstamp_get() and ndo_hwtstamp_set() to avoid the need
for raw ioctl() handling in drivers.
- Simplify genetlink dump operations (doit/dumpit) providing them
the common information already populated in struct genl_info.
- Extend and use the yaml devlink specs to [re]generate the split ops.
- Introduce devlink selective dumps, to allow SF filtering SF based on
handle and other attributes.
- Add yaml netlink spec for netlink-raw families, allow route, link and
address related queries via the ynl tool.
- Remove phylink legacy mode support.
- Support offload LED blinking to phy.
- Add devlink port function attributes for IPsec.
New hardware / drivers
----------------------
- Ethernet:
- Broadcom ASP 2.0 (72165) ethernet controller
- MediaTek MT7988 SoC
- Texas Instruments AM654 SoC
- Texas Instruments IEP driver
- Atheros qca8081 phy
- Marvell 88Q2110 phy
- NXP TJA1120 phy
- WiFi:
- MediaTek mt7981 support
- Can:
- Kvaser SmartFusion2 PCI Express devices
- Allwinner T113 controllers
- Texas Instruments tcan4552/4553 chips
- Bluetooth:
- Intel Gale Peak
- Qualcomm WCN3988 and WCN7850
- NXP AW693 and IW624
- Mediatek MT2925
Drivers
-------
- Ethernet NICs:
- nVidia/Mellanox:
- mlx5:
- support UDP encapsulation in packet offload mode
- IPsec packet offload support in eswitch mode
- improve aRFS observability by adding new set of counters
- extends MACsec offload support to cover RoCE traffic
- dynamic completion EQs
- mlx4:
- convert to use auxiliary bus instead of custom interface logic
- Intel
- ice:
- implement switchdev bridge offload, even for LAG interfaces
- implement SRIOV support for LAG interfaces
- igc:
- add support for multiple in-flight TX timestamps
- Broadcom:
- bnxt:
- use the unified RX page pool buffers for XDP and non-XDP
- use the NAPI skb allocation cache
- OcteonTX2:
- support Round Robin scheduling HTB offload
- TC flower offload support for SPI field
- Freescale:
- add XDP_TX feature support
- AMD:
- ionic: add support for PCI FLR event
- sfc:
- basic conntrack offload
- introduce eth, ipv4 and ipv6 pedit offloads
- ST Microelectronics:
- stmmac: maximze PTP timestamping resolution
- Virtual NICs:
- Microsoft vNIC:
- batch ringing RX queue doorbell on receiving packets
- add page pool for RX buffers
- Virtio vNIC:
- add per queue interrupt coalescing support
- Google vNIC:
- add queue-page-list mode support
- Ethernet high-speed switches:
- nVidia/Mellanox (mlxsw):
- add port range matching tc-flower offload
- permit enslavement to netdevices with uppers
- Ethernet embedded switches:
- Marvell (mv88e6xxx):
- convert to phylink_pcs
- Renesas:
- r8A779fx: add speed change support
- rzn1: enables vlan support
- Ethernet PHYs:
- convert mv88e6xxx to phylink_pcs
- WiFi:
- Qualcomm Wi-Fi 7 (ath12k):
- extremely High Throughput (EHT) PHY support
- RealTek (rtl8xxxu):
- enable AP mode for: RTL8192FU, RTL8710BU (RTL8188GU),
RTL8192EU and RTL8723BU
- RealTek (rtw89):
- Introduce Time Averaged SAR (TAS) support
- Connector:
- support for event filtering
Signed-off-by: Paolo Abeni <pabeni@redhat.com>
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Merge tag 'net-next-6.6' of git://git.kernel.org/pub/scm/linux/kernel/git/netdev/net-next
Pull networking updates from Paolo Abeni:
"Core:
- Increase size limits for to-be-sent skb frag allocations. This
allows tun, tap devices and packet sockets to better cope with
large writes operations
- Store netdevs in an xarray, to simplify iterating over netdevs
- Refactor nexthop selection for multipath routes
- Improve sched class lifetime handling
- Add backup nexthop ID support for bridge
- Implement drop reasons support in openvswitch
- Several data races annotations and fixes
- Constify the sk parameter of routing functions
- Prepend kernel version to netconsole message
Protocols:
- Implement support for TCP probing the peer being under memory
pressure
- Remove hard coded limitation on IPv6 specific info placement inside
the socket struct
- Get rid of sysctl_tcp_adv_win_scale and use an auto-estimated per
socket scaling factor
- Scaling-up the IPv6 expired route GC via a separated list of
expiring routes
- In-kernel support for the TLS alert protocol
- Better support for UDP reuseport with connected sockets
- Add NEXT-C-SID support for SRv6 End.X behavior, reducing the SR
header size
- Get rid of additional ancillary per MPTCP connection struct socket
- Implement support for BPF-based MPTCP packet schedulers
- Format MPTCP subtests selftests results in TAP
- Several new SMC 2.1 features including unique experimental options,
max connections per lgr negotiation, max links per lgr negotiation
BPF:
- Multi-buffer support in AF_XDP
- Add multi uprobe BPF links for attaching multiple uprobes and usdt
probes, which is significantly faster and saves extra fds
- Implement an fd-based tc BPF attach API (TCX) and BPF link support
on top of it
- Add SO_REUSEPORT support for TC bpf_sk_assign
- Support new instructions from cpu v4 to simplify the generated code
and feature completeness, for x86, arm64, riscv64
- Support defragmenting IPv(4|6) packets in BPF
- Teach verifier actual bounds of bpf_get_smp_processor_id() and fix
perf+libbpf issue related to custom section handling
- Introduce bpf map element count and enable it for all program types
- Add a BPF hook in sys_socket() to change the protocol ID from
IPPROTO_TCP to IPPROTO_MPTCP to cover migration for legacy
- Introduce bpf_me_mcache_free_rcu() and fix OOM under stress
- Add uprobe support for the bpf_get_func_ip helper
- Check skb ownership against full socket
- Support for up to 12 arguments in BPF trampoline
- Extend link_info for kprobe_multi and perf_event links
Netfilter:
- Speed-up process exit by aborting ruleset validation if a fatal
signal is pending
- Allow NLA_POLICY_MASK to be used with BE16/BE32 types
Driver API:
- Page pool optimizations, to improve data locality and cache usage
- Introduce ndo_hwtstamp_get() and ndo_hwtstamp_set() to avoid the
need for raw ioctl() handling in drivers
- Simplify genetlink dump operations (doit/dumpit) providing them the
common information already populated in struct genl_info
- Extend and use the yaml devlink specs to [re]generate the split ops
- Introduce devlink selective dumps, to allow SF filtering SF based
on handle and other attributes
- Add yaml netlink spec for netlink-raw families, allow route, link
and address related queries via the ynl tool
- Remove phylink legacy mode support
- Support offload LED blinking to phy
- Add devlink port function attributes for IPsec
New hardware / drivers:
- Ethernet:
- Broadcom ASP 2.0 (72165) ethernet controller
- MediaTek MT7988 SoC
- Texas Instruments AM654 SoC
- Texas Instruments IEP driver
- Atheros qca8081 phy
- Marvell 88Q2110 phy
- NXP TJA1120 phy
- WiFi:
- MediaTek mt7981 support
- Can:
- Kvaser SmartFusion2 PCI Express devices
- Allwinner T113 controllers
- Texas Instruments tcan4552/4553 chips
- Bluetooth:
- Intel Gale Peak
- Qualcomm WCN3988 and WCN7850
- NXP AW693 and IW624
- Mediatek MT2925
Drivers:
- Ethernet NICs:
- nVidia/Mellanox:
- mlx5:
- support UDP encapsulation in packet offload mode
- IPsec packet offload support in eswitch mode
- improve aRFS observability by adding new set of counters
- extends MACsec offload support to cover RoCE traffic
- dynamic completion EQs
- mlx4:
- convert to use auxiliary bus instead of custom interface
logic
- Intel
- ice:
- implement switchdev bridge offload, even for LAG
interfaces
- implement SRIOV support for LAG interfaces
- igc:
- add support for multiple in-flight TX timestamps
- Broadcom:
- bnxt:
- use the unified RX page pool buffers for XDP and non-XDP
- use the NAPI skb allocation cache
- OcteonTX2:
- support Round Robin scheduling HTB offload
- TC flower offload support for SPI field
- Freescale:
- add XDP_TX feature support
- AMD:
- ionic: add support for PCI FLR event
- sfc:
- basic conntrack offload
- introduce eth, ipv4 and ipv6 pedit offloads
- ST Microelectronics:
- stmmac: maximze PTP timestamping resolution
- Virtual NICs:
- Microsoft vNIC:
- batch ringing RX queue doorbell on receiving packets
- add page pool for RX buffers
- Virtio vNIC:
- add per queue interrupt coalescing support
- Google vNIC:
- add queue-page-list mode support
- Ethernet high-speed switches:
- nVidia/Mellanox (mlxsw):
- add port range matching tc-flower offload
- permit enslavement to netdevices with uppers
- Ethernet embedded switches:
- Marvell (mv88e6xxx):
- convert to phylink_pcs
- Renesas:
- r8A779fx: add speed change support
- rzn1: enables vlan support
- Ethernet PHYs:
- convert mv88e6xxx to phylink_pcs
- WiFi:
- Qualcomm Wi-Fi 7 (ath12k):
- extremely High Throughput (EHT) PHY support
- RealTek (rtl8xxxu):
- enable AP mode for: RTL8192FU, RTL8710BU (RTL8188GU),
RTL8192EU and RTL8723BU
- RealTek (rtw89):
- Introduce Time Averaged SAR (TAS) support
- Connector:
- support for event filtering"
* tag 'net-next-6.6' of git://git.kernel.org/pub/scm/linux/kernel/git/netdev/net-next: (1806 commits)
net: ethernet: mtk_wed: minor change in wed_{tx,rx}info_show
net: ethernet: mtk_wed: add some more info in wed_txinfo_show handler
net: stmmac: clarify difference between "interface" and "phy_interface"
r8152: add vendor/device ID pair for D-Link DUB-E250
devlink: move devlink_notify_register/unregister() to dev.c
devlink: move small_ops definition into netlink.c
devlink: move tracepoint definitions into core.c
devlink: push linecard related code into separate file
devlink: push rate related code into separate file
devlink: push trap related code into separate file
devlink: use tracepoint_enabled() helper
devlink: push region related code into separate file
devlink: push param related code into separate file
devlink: push resource related code into separate file
devlink: push dpipe related code into separate file
devlink: move and rename devlink_dpipe_send_and_alloc_skb() helper
devlink: push shared buffer related code into separate file
devlink: push port related code into separate file
devlink: push object register/unregister notifications into separate helpers
inet: fix IP_TRANSPARENT error handling
...
658 lines
20 KiB
C
658 lines
20 KiB
C
/* SPDX-License-Identifier: GPL-2.0+ */
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/*
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* Read-Copy Update definitions shared among RCU implementations.
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*
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* Copyright IBM Corporation, 2011
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*
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* Author: Paul E. McKenney <paulmck@linux.ibm.com>
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*/
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#ifndef __LINUX_RCU_H
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#define __LINUX_RCU_H
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#include <trace/events/rcu.h>
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/*
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* Grace-period counter management.
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*
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* The two least significant bits contain the control flags.
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* The most significant bits contain the grace-period sequence counter.
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*
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* When both control flags are zero, no grace period is in progress.
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* When either bit is non-zero, a grace period has started and is in
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* progress. When the grace period completes, the control flags are reset
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* to 0 and the grace-period sequence counter is incremented.
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*
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* However some specific RCU usages make use of custom values.
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*
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* SRCU special control values:
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*
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* SRCU_SNP_INIT_SEQ : Invalid/init value set when SRCU node
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* is initialized.
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*
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* SRCU_STATE_IDLE : No SRCU gp is in progress
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*
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* SRCU_STATE_SCAN1 : State set by rcu_seq_start(). Indicates
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* we are scanning the readers on the slot
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* defined as inactive (there might well
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* be pending readers that will use that
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* index, but their number is bounded).
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*
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* SRCU_STATE_SCAN2 : State set manually via rcu_seq_set_state()
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* Indicates we are flipping the readers
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* index and then scanning the readers on the
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* slot newly designated as inactive (again,
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* the number of pending readers that will use
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* this inactive index is bounded).
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*
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* RCU polled GP special control value:
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*
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* RCU_GET_STATE_COMPLETED : State value indicating an already-completed
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* polled GP has completed. This value covers
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* both the state and the counter of the
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* grace-period sequence number.
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*/
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#define RCU_SEQ_CTR_SHIFT 2
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#define RCU_SEQ_STATE_MASK ((1 << RCU_SEQ_CTR_SHIFT) - 1)
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/* Low-order bit definition for polled grace-period APIs. */
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#define RCU_GET_STATE_COMPLETED 0x1
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extern int sysctl_sched_rt_runtime;
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/*
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* Return the counter portion of a sequence number previously returned
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* by rcu_seq_snap() or rcu_seq_current().
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*/
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static inline unsigned long rcu_seq_ctr(unsigned long s)
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{
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return s >> RCU_SEQ_CTR_SHIFT;
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}
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/*
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* Return the state portion of a sequence number previously returned
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* by rcu_seq_snap() or rcu_seq_current().
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*/
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static inline int rcu_seq_state(unsigned long s)
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{
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return s & RCU_SEQ_STATE_MASK;
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}
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/*
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* Set the state portion of the pointed-to sequence number.
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* The caller is responsible for preventing conflicting updates.
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*/
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static inline void rcu_seq_set_state(unsigned long *sp, int newstate)
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{
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WARN_ON_ONCE(newstate & ~RCU_SEQ_STATE_MASK);
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WRITE_ONCE(*sp, (*sp & ~RCU_SEQ_STATE_MASK) + newstate);
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}
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/* Adjust sequence number for start of update-side operation. */
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static inline void rcu_seq_start(unsigned long *sp)
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{
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WRITE_ONCE(*sp, *sp + 1);
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smp_mb(); /* Ensure update-side operation after counter increment. */
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WARN_ON_ONCE(rcu_seq_state(*sp) != 1);
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}
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/* Compute the end-of-grace-period value for the specified sequence number. */
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static inline unsigned long rcu_seq_endval(unsigned long *sp)
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{
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return (*sp | RCU_SEQ_STATE_MASK) + 1;
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}
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/* Adjust sequence number for end of update-side operation. */
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static inline void rcu_seq_end(unsigned long *sp)
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{
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smp_mb(); /* Ensure update-side operation before counter increment. */
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WARN_ON_ONCE(!rcu_seq_state(*sp));
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WRITE_ONCE(*sp, rcu_seq_endval(sp));
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}
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/*
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* rcu_seq_snap - Take a snapshot of the update side's sequence number.
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*
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* This function returns the earliest value of the grace-period sequence number
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* that will indicate that a full grace period has elapsed since the current
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* time. Once the grace-period sequence number has reached this value, it will
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* be safe to invoke all callbacks that have been registered prior to the
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* current time. This value is the current grace-period number plus two to the
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* power of the number of low-order bits reserved for state, then rounded up to
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* the next value in which the state bits are all zero.
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*/
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static inline unsigned long rcu_seq_snap(unsigned long *sp)
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{
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unsigned long s;
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s = (READ_ONCE(*sp) + 2 * RCU_SEQ_STATE_MASK + 1) & ~RCU_SEQ_STATE_MASK;
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smp_mb(); /* Above access must not bleed into critical section. */
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return s;
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}
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/* Return the current value the update side's sequence number, no ordering. */
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static inline unsigned long rcu_seq_current(unsigned long *sp)
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{
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return READ_ONCE(*sp);
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}
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/*
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* Given a snapshot from rcu_seq_snap(), determine whether or not the
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* corresponding update-side operation has started.
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*/
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static inline bool rcu_seq_started(unsigned long *sp, unsigned long s)
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{
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return ULONG_CMP_LT((s - 1) & ~RCU_SEQ_STATE_MASK, READ_ONCE(*sp));
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}
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/*
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* Given a snapshot from rcu_seq_snap(), determine whether or not a
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* full update-side operation has occurred.
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*/
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static inline bool rcu_seq_done(unsigned long *sp, unsigned long s)
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{
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return ULONG_CMP_GE(READ_ONCE(*sp), s);
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}
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/*
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* Given a snapshot from rcu_seq_snap(), determine whether or not a
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* full update-side operation has occurred, but do not allow the
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* (ULONG_MAX / 2) safety-factor/guard-band.
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*/
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static inline bool rcu_seq_done_exact(unsigned long *sp, unsigned long s)
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{
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unsigned long cur_s = READ_ONCE(*sp);
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return ULONG_CMP_GE(cur_s, s) || ULONG_CMP_LT(cur_s, s - (2 * RCU_SEQ_STATE_MASK + 1));
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}
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/*
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* Has a grace period completed since the time the old gp_seq was collected?
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*/
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static inline bool rcu_seq_completed_gp(unsigned long old, unsigned long new)
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{
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return ULONG_CMP_LT(old, new & ~RCU_SEQ_STATE_MASK);
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}
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/*
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* Has a grace period started since the time the old gp_seq was collected?
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*/
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static inline bool rcu_seq_new_gp(unsigned long old, unsigned long new)
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{
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return ULONG_CMP_LT((old + RCU_SEQ_STATE_MASK) & ~RCU_SEQ_STATE_MASK,
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new);
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}
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/*
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* Roughly how many full grace periods have elapsed between the collection
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* of the two specified grace periods?
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*/
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static inline unsigned long rcu_seq_diff(unsigned long new, unsigned long old)
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{
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unsigned long rnd_diff;
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if (old == new)
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return 0;
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/*
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* Compute the number of grace periods (still shifted up), plus
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* one if either of new and old is not an exact grace period.
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*/
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rnd_diff = (new & ~RCU_SEQ_STATE_MASK) -
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((old + RCU_SEQ_STATE_MASK) & ~RCU_SEQ_STATE_MASK) +
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((new & RCU_SEQ_STATE_MASK) || (old & RCU_SEQ_STATE_MASK));
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if (ULONG_CMP_GE(RCU_SEQ_STATE_MASK, rnd_diff))
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return 1; /* Definitely no grace period has elapsed. */
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return ((rnd_diff - RCU_SEQ_STATE_MASK - 1) >> RCU_SEQ_CTR_SHIFT) + 2;
|
|
}
|
|
|
|
/*
|
|
* debug_rcu_head_queue()/debug_rcu_head_unqueue() are used internally
|
|
* by call_rcu() and rcu callback execution, and are therefore not part
|
|
* of the RCU API. These are in rcupdate.h because they are used by all
|
|
* RCU implementations.
|
|
*/
|
|
|
|
#ifdef CONFIG_DEBUG_OBJECTS_RCU_HEAD
|
|
# define STATE_RCU_HEAD_READY 0
|
|
# define STATE_RCU_HEAD_QUEUED 1
|
|
|
|
extern const struct debug_obj_descr rcuhead_debug_descr;
|
|
|
|
static inline int debug_rcu_head_queue(struct rcu_head *head)
|
|
{
|
|
int r1;
|
|
|
|
r1 = debug_object_activate(head, &rcuhead_debug_descr);
|
|
debug_object_active_state(head, &rcuhead_debug_descr,
|
|
STATE_RCU_HEAD_READY,
|
|
STATE_RCU_HEAD_QUEUED);
|
|
return r1;
|
|
}
|
|
|
|
static inline void debug_rcu_head_unqueue(struct rcu_head *head)
|
|
{
|
|
debug_object_active_state(head, &rcuhead_debug_descr,
|
|
STATE_RCU_HEAD_QUEUED,
|
|
STATE_RCU_HEAD_READY);
|
|
debug_object_deactivate(head, &rcuhead_debug_descr);
|
|
}
|
|
#else /* !CONFIG_DEBUG_OBJECTS_RCU_HEAD */
|
|
static inline int debug_rcu_head_queue(struct rcu_head *head)
|
|
{
|
|
return 0;
|
|
}
|
|
|
|
static inline void debug_rcu_head_unqueue(struct rcu_head *head)
|
|
{
|
|
}
|
|
#endif /* #else !CONFIG_DEBUG_OBJECTS_RCU_HEAD */
|
|
|
|
extern int rcu_cpu_stall_suppress_at_boot;
|
|
|
|
static inline bool rcu_stall_is_suppressed_at_boot(void)
|
|
{
|
|
return rcu_cpu_stall_suppress_at_boot && !rcu_inkernel_boot_has_ended();
|
|
}
|
|
|
|
#ifdef CONFIG_RCU_STALL_COMMON
|
|
|
|
extern int rcu_cpu_stall_ftrace_dump;
|
|
extern int rcu_cpu_stall_suppress;
|
|
extern int rcu_cpu_stall_timeout;
|
|
extern int rcu_exp_cpu_stall_timeout;
|
|
extern int rcu_cpu_stall_cputime;
|
|
extern bool rcu_exp_stall_task_details __read_mostly;
|
|
int rcu_jiffies_till_stall_check(void);
|
|
int rcu_exp_jiffies_till_stall_check(void);
|
|
|
|
static inline bool rcu_stall_is_suppressed(void)
|
|
{
|
|
return rcu_stall_is_suppressed_at_boot() || rcu_cpu_stall_suppress;
|
|
}
|
|
|
|
#define rcu_ftrace_dump_stall_suppress() \
|
|
do { \
|
|
if (!rcu_cpu_stall_suppress) \
|
|
rcu_cpu_stall_suppress = 3; \
|
|
} while (0)
|
|
|
|
#define rcu_ftrace_dump_stall_unsuppress() \
|
|
do { \
|
|
if (rcu_cpu_stall_suppress == 3) \
|
|
rcu_cpu_stall_suppress = 0; \
|
|
} while (0)
|
|
|
|
#else /* #endif #ifdef CONFIG_RCU_STALL_COMMON */
|
|
|
|
static inline bool rcu_stall_is_suppressed(void)
|
|
{
|
|
return rcu_stall_is_suppressed_at_boot();
|
|
}
|
|
#define rcu_ftrace_dump_stall_suppress()
|
|
#define rcu_ftrace_dump_stall_unsuppress()
|
|
#endif /* #ifdef CONFIG_RCU_STALL_COMMON */
|
|
|
|
/*
|
|
* Strings used in tracepoints need to be exported via the
|
|
* tracing system such that tools like perf and trace-cmd can
|
|
* translate the string address pointers to actual text.
|
|
*/
|
|
#define TPS(x) tracepoint_string(x)
|
|
|
|
/*
|
|
* Dump the ftrace buffer, but only one time per callsite per boot.
|
|
*/
|
|
#define rcu_ftrace_dump(oops_dump_mode) \
|
|
do { \
|
|
static atomic_t ___rfd_beenhere = ATOMIC_INIT(0); \
|
|
\
|
|
if (!atomic_read(&___rfd_beenhere) && \
|
|
!atomic_xchg(&___rfd_beenhere, 1)) { \
|
|
tracing_off(); \
|
|
rcu_ftrace_dump_stall_suppress(); \
|
|
ftrace_dump(oops_dump_mode); \
|
|
rcu_ftrace_dump_stall_unsuppress(); \
|
|
} \
|
|
} while (0)
|
|
|
|
void rcu_early_boot_tests(void);
|
|
void rcu_test_sync_prims(void);
|
|
|
|
/*
|
|
* This function really isn't for public consumption, but RCU is special in
|
|
* that context switches can allow the state machine to make progress.
|
|
*/
|
|
extern void resched_cpu(int cpu);
|
|
|
|
#if !defined(CONFIG_TINY_RCU)
|
|
|
|
#include <linux/rcu_node_tree.h>
|
|
|
|
extern int rcu_num_lvls;
|
|
extern int num_rcu_lvl[];
|
|
extern int rcu_num_nodes;
|
|
static bool rcu_fanout_exact;
|
|
static int rcu_fanout_leaf;
|
|
|
|
/*
|
|
* Compute the per-level fanout, either using the exact fanout specified
|
|
* or balancing the tree, depending on the rcu_fanout_exact boot parameter.
|
|
*/
|
|
static inline void rcu_init_levelspread(int *levelspread, const int *levelcnt)
|
|
{
|
|
int i;
|
|
|
|
for (i = 0; i < RCU_NUM_LVLS; i++)
|
|
levelspread[i] = INT_MIN;
|
|
if (rcu_fanout_exact) {
|
|
levelspread[rcu_num_lvls - 1] = rcu_fanout_leaf;
|
|
for (i = rcu_num_lvls - 2; i >= 0; i--)
|
|
levelspread[i] = RCU_FANOUT;
|
|
} else {
|
|
int ccur;
|
|
int cprv;
|
|
|
|
cprv = nr_cpu_ids;
|
|
for (i = rcu_num_lvls - 1; i >= 0; i--) {
|
|
ccur = levelcnt[i];
|
|
levelspread[i] = (cprv + ccur - 1) / ccur;
|
|
cprv = ccur;
|
|
}
|
|
}
|
|
}
|
|
|
|
extern void rcu_init_geometry(void);
|
|
|
|
/* Returns a pointer to the first leaf rcu_node structure. */
|
|
#define rcu_first_leaf_node() (rcu_state.level[rcu_num_lvls - 1])
|
|
|
|
/* Is this rcu_node a leaf? */
|
|
#define rcu_is_leaf_node(rnp) ((rnp)->level == rcu_num_lvls - 1)
|
|
|
|
/* Is this rcu_node the last leaf? */
|
|
#define rcu_is_last_leaf_node(rnp) ((rnp) == &rcu_state.node[rcu_num_nodes - 1])
|
|
|
|
/*
|
|
* Do a full breadth-first scan of the {s,}rcu_node structures for the
|
|
* specified state structure (for SRCU) or the only rcu_state structure
|
|
* (for RCU).
|
|
*/
|
|
#define _rcu_for_each_node_breadth_first(sp, rnp) \
|
|
for ((rnp) = &(sp)->node[0]; \
|
|
(rnp) < &(sp)->node[rcu_num_nodes]; (rnp)++)
|
|
#define rcu_for_each_node_breadth_first(rnp) \
|
|
_rcu_for_each_node_breadth_first(&rcu_state, rnp)
|
|
#define srcu_for_each_node_breadth_first(ssp, rnp) \
|
|
_rcu_for_each_node_breadth_first(ssp->srcu_sup, rnp)
|
|
|
|
/*
|
|
* Scan the leaves of the rcu_node hierarchy for the rcu_state structure.
|
|
* Note that if there is a singleton rcu_node tree with but one rcu_node
|
|
* structure, this loop -will- visit the rcu_node structure. It is still
|
|
* a leaf node, even if it is also the root node.
|
|
*/
|
|
#define rcu_for_each_leaf_node(rnp) \
|
|
for ((rnp) = rcu_first_leaf_node(); \
|
|
(rnp) < &rcu_state.node[rcu_num_nodes]; (rnp)++)
|
|
|
|
/*
|
|
* Iterate over all possible CPUs in a leaf RCU node.
|
|
*/
|
|
#define for_each_leaf_node_possible_cpu(rnp, cpu) \
|
|
for (WARN_ON_ONCE(!rcu_is_leaf_node(rnp)), \
|
|
(cpu) = cpumask_next((rnp)->grplo - 1, cpu_possible_mask); \
|
|
(cpu) <= rnp->grphi; \
|
|
(cpu) = cpumask_next((cpu), cpu_possible_mask))
|
|
|
|
/*
|
|
* Iterate over all CPUs in a leaf RCU node's specified mask.
|
|
*/
|
|
#define rcu_find_next_bit(rnp, cpu, mask) \
|
|
((rnp)->grplo + find_next_bit(&(mask), BITS_PER_LONG, (cpu)))
|
|
#define for_each_leaf_node_cpu_mask(rnp, cpu, mask) \
|
|
for (WARN_ON_ONCE(!rcu_is_leaf_node(rnp)), \
|
|
(cpu) = rcu_find_next_bit((rnp), 0, (mask)); \
|
|
(cpu) <= rnp->grphi; \
|
|
(cpu) = rcu_find_next_bit((rnp), (cpu) + 1 - (rnp->grplo), (mask)))
|
|
|
|
#endif /* !defined(CONFIG_TINY_RCU) */
|
|
|
|
#if !defined(CONFIG_TINY_RCU) || defined(CONFIG_TASKS_RCU_GENERIC)
|
|
|
|
/*
|
|
* Wrappers for the rcu_node::lock acquire and release.
|
|
*
|
|
* Because the rcu_nodes form a tree, the tree traversal locking will observe
|
|
* different lock values, this in turn means that an UNLOCK of one level
|
|
* followed by a LOCK of another level does not imply a full memory barrier;
|
|
* and most importantly transitivity is lost.
|
|
*
|
|
* In order to restore full ordering between tree levels, augment the regular
|
|
* lock acquire functions with smp_mb__after_unlock_lock().
|
|
*
|
|
* As ->lock of struct rcu_node is a __private field, therefore one should use
|
|
* these wrappers rather than directly call raw_spin_{lock,unlock}* on ->lock.
|
|
*/
|
|
#define raw_spin_lock_rcu_node(p) \
|
|
do { \
|
|
raw_spin_lock(&ACCESS_PRIVATE(p, lock)); \
|
|
smp_mb__after_unlock_lock(); \
|
|
} while (0)
|
|
|
|
#define raw_spin_unlock_rcu_node(p) \
|
|
do { \
|
|
lockdep_assert_irqs_disabled(); \
|
|
raw_spin_unlock(&ACCESS_PRIVATE(p, lock)); \
|
|
} while (0)
|
|
|
|
#define raw_spin_lock_irq_rcu_node(p) \
|
|
do { \
|
|
raw_spin_lock_irq(&ACCESS_PRIVATE(p, lock)); \
|
|
smp_mb__after_unlock_lock(); \
|
|
} while (0)
|
|
|
|
#define raw_spin_unlock_irq_rcu_node(p) \
|
|
do { \
|
|
lockdep_assert_irqs_disabled(); \
|
|
raw_spin_unlock_irq(&ACCESS_PRIVATE(p, lock)); \
|
|
} while (0)
|
|
|
|
#define raw_spin_lock_irqsave_rcu_node(p, flags) \
|
|
do { \
|
|
raw_spin_lock_irqsave(&ACCESS_PRIVATE(p, lock), flags); \
|
|
smp_mb__after_unlock_lock(); \
|
|
} while (0)
|
|
|
|
#define raw_spin_unlock_irqrestore_rcu_node(p, flags) \
|
|
do { \
|
|
lockdep_assert_irqs_disabled(); \
|
|
raw_spin_unlock_irqrestore(&ACCESS_PRIVATE(p, lock), flags); \
|
|
} while (0)
|
|
|
|
#define raw_spin_trylock_rcu_node(p) \
|
|
({ \
|
|
bool ___locked = raw_spin_trylock(&ACCESS_PRIVATE(p, lock)); \
|
|
\
|
|
if (___locked) \
|
|
smp_mb__after_unlock_lock(); \
|
|
___locked; \
|
|
})
|
|
|
|
#define raw_lockdep_assert_held_rcu_node(p) \
|
|
lockdep_assert_held(&ACCESS_PRIVATE(p, lock))
|
|
|
|
#endif // #if !defined(CONFIG_TINY_RCU) || defined(CONFIG_TASKS_RCU_GENERIC)
|
|
|
|
#ifdef CONFIG_TINY_RCU
|
|
/* Tiny RCU doesn't expedite, as its purpose in life is instead to be tiny. */
|
|
static inline bool rcu_gp_is_normal(void) { return true; }
|
|
static inline bool rcu_gp_is_expedited(void) { return false; }
|
|
static inline bool rcu_async_should_hurry(void) { return false; }
|
|
static inline void rcu_expedite_gp(void) { }
|
|
static inline void rcu_unexpedite_gp(void) { }
|
|
static inline void rcu_async_hurry(void) { }
|
|
static inline void rcu_async_relax(void) { }
|
|
#else /* #ifdef CONFIG_TINY_RCU */
|
|
bool rcu_gp_is_normal(void); /* Internal RCU use. */
|
|
bool rcu_gp_is_expedited(void); /* Internal RCU use. */
|
|
bool rcu_async_should_hurry(void); /* Internal RCU use. */
|
|
void rcu_expedite_gp(void);
|
|
void rcu_unexpedite_gp(void);
|
|
void rcu_async_hurry(void);
|
|
void rcu_async_relax(void);
|
|
void rcupdate_announce_bootup_oddness(void);
|
|
#ifdef CONFIG_TASKS_RCU_GENERIC
|
|
void show_rcu_tasks_gp_kthreads(void);
|
|
#else /* #ifdef CONFIG_TASKS_RCU_GENERIC */
|
|
static inline void show_rcu_tasks_gp_kthreads(void) {}
|
|
#endif /* #else #ifdef CONFIG_TASKS_RCU_GENERIC */
|
|
#endif /* #else #ifdef CONFIG_TINY_RCU */
|
|
|
|
#ifdef CONFIG_TASKS_RCU
|
|
struct task_struct *get_rcu_tasks_gp_kthread(void);
|
|
#endif // # ifdef CONFIG_TASKS_RCU
|
|
|
|
#ifdef CONFIG_TASKS_RUDE_RCU
|
|
struct task_struct *get_rcu_tasks_rude_gp_kthread(void);
|
|
#endif // # ifdef CONFIG_TASKS_RUDE_RCU
|
|
|
|
#define RCU_SCHEDULER_INACTIVE 0
|
|
#define RCU_SCHEDULER_INIT 1
|
|
#define RCU_SCHEDULER_RUNNING 2
|
|
|
|
enum rcutorture_type {
|
|
RCU_FLAVOR,
|
|
RCU_TASKS_FLAVOR,
|
|
RCU_TASKS_RUDE_FLAVOR,
|
|
RCU_TASKS_TRACING_FLAVOR,
|
|
RCU_TRIVIAL_FLAVOR,
|
|
SRCU_FLAVOR,
|
|
INVALID_RCU_FLAVOR
|
|
};
|
|
|
|
#if defined(CONFIG_RCU_LAZY)
|
|
unsigned long rcu_lazy_get_jiffies_till_flush(void);
|
|
void rcu_lazy_set_jiffies_till_flush(unsigned long j);
|
|
#else
|
|
static inline unsigned long rcu_lazy_get_jiffies_till_flush(void) { return 0; }
|
|
static inline void rcu_lazy_set_jiffies_till_flush(unsigned long j) { }
|
|
#endif
|
|
|
|
#if defined(CONFIG_TREE_RCU)
|
|
void rcutorture_get_gp_data(enum rcutorture_type test_type, int *flags,
|
|
unsigned long *gp_seq);
|
|
void do_trace_rcu_torture_read(const char *rcutorturename,
|
|
struct rcu_head *rhp,
|
|
unsigned long secs,
|
|
unsigned long c_old,
|
|
unsigned long c);
|
|
void rcu_gp_set_torture_wait(int duration);
|
|
#else
|
|
static inline void rcutorture_get_gp_data(enum rcutorture_type test_type,
|
|
int *flags, unsigned long *gp_seq)
|
|
{
|
|
*flags = 0;
|
|
*gp_seq = 0;
|
|
}
|
|
#ifdef CONFIG_RCU_TRACE
|
|
void do_trace_rcu_torture_read(const char *rcutorturename,
|
|
struct rcu_head *rhp,
|
|
unsigned long secs,
|
|
unsigned long c_old,
|
|
unsigned long c);
|
|
#else
|
|
#define do_trace_rcu_torture_read(rcutorturename, rhp, secs, c_old, c) \
|
|
do { } while (0)
|
|
#endif
|
|
static inline void rcu_gp_set_torture_wait(int duration) { }
|
|
#endif
|
|
|
|
#if IS_ENABLED(CONFIG_RCU_TORTURE_TEST) || IS_MODULE(CONFIG_RCU_TORTURE_TEST)
|
|
long rcutorture_sched_setaffinity(pid_t pid, const struct cpumask *in_mask);
|
|
#endif
|
|
|
|
#ifdef CONFIG_TINY_SRCU
|
|
|
|
static inline void srcutorture_get_gp_data(enum rcutorture_type test_type,
|
|
struct srcu_struct *sp, int *flags,
|
|
unsigned long *gp_seq)
|
|
{
|
|
if (test_type != SRCU_FLAVOR)
|
|
return;
|
|
*flags = 0;
|
|
*gp_seq = sp->srcu_idx;
|
|
}
|
|
|
|
#elif defined(CONFIG_TREE_SRCU)
|
|
|
|
void srcutorture_get_gp_data(enum rcutorture_type test_type,
|
|
struct srcu_struct *sp, int *flags,
|
|
unsigned long *gp_seq);
|
|
|
|
#endif
|
|
|
|
#ifdef CONFIG_TINY_RCU
|
|
static inline bool rcu_dynticks_zero_in_eqs(int cpu, int *vp) { return false; }
|
|
static inline unsigned long rcu_get_gp_seq(void) { return 0; }
|
|
static inline unsigned long rcu_exp_batches_completed(void) { return 0; }
|
|
static inline unsigned long
|
|
srcu_batches_completed(struct srcu_struct *sp) { return 0; }
|
|
static inline void rcu_force_quiescent_state(void) { }
|
|
static inline bool rcu_check_boost_fail(unsigned long gp_state, int *cpup) { return true; }
|
|
static inline void show_rcu_gp_kthreads(void) { }
|
|
static inline int rcu_get_gp_kthreads_prio(void) { return 0; }
|
|
static inline void rcu_fwd_progress_check(unsigned long j) { }
|
|
static inline void rcu_gp_slow_register(atomic_t *rgssp) { }
|
|
static inline void rcu_gp_slow_unregister(atomic_t *rgssp) { }
|
|
#else /* #ifdef CONFIG_TINY_RCU */
|
|
bool rcu_dynticks_zero_in_eqs(int cpu, int *vp);
|
|
unsigned long rcu_get_gp_seq(void);
|
|
unsigned long rcu_exp_batches_completed(void);
|
|
unsigned long srcu_batches_completed(struct srcu_struct *sp);
|
|
bool rcu_check_boost_fail(unsigned long gp_state, int *cpup);
|
|
void show_rcu_gp_kthreads(void);
|
|
int rcu_get_gp_kthreads_prio(void);
|
|
void rcu_fwd_progress_check(unsigned long j);
|
|
void rcu_force_quiescent_state(void);
|
|
extern struct workqueue_struct *rcu_gp_wq;
|
|
#ifdef CONFIG_RCU_EXP_KTHREAD
|
|
extern struct kthread_worker *rcu_exp_gp_kworker;
|
|
extern struct kthread_worker *rcu_exp_par_gp_kworker;
|
|
#else /* !CONFIG_RCU_EXP_KTHREAD */
|
|
extern struct workqueue_struct *rcu_par_gp_wq;
|
|
#endif /* CONFIG_RCU_EXP_KTHREAD */
|
|
void rcu_gp_slow_register(atomic_t *rgssp);
|
|
void rcu_gp_slow_unregister(atomic_t *rgssp);
|
|
#endif /* #else #ifdef CONFIG_TINY_RCU */
|
|
|
|
#ifdef CONFIG_RCU_NOCB_CPU
|
|
void rcu_bind_current_to_nocb(void);
|
|
#else
|
|
static inline void rcu_bind_current_to_nocb(void) { }
|
|
#endif
|
|
|
|
#if !defined(CONFIG_TINY_RCU) && defined(CONFIG_TASKS_RCU)
|
|
void show_rcu_tasks_classic_gp_kthread(void);
|
|
#else
|
|
static inline void show_rcu_tasks_classic_gp_kthread(void) {}
|
|
#endif
|
|
#if !defined(CONFIG_TINY_RCU) && defined(CONFIG_TASKS_RUDE_RCU)
|
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void show_rcu_tasks_rude_gp_kthread(void);
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#else
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static inline void show_rcu_tasks_rude_gp_kthread(void) {}
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#endif
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#if !defined(CONFIG_TINY_RCU) && defined(CONFIG_TASKS_TRACE_RCU)
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void show_rcu_tasks_trace_gp_kthread(void);
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#else
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static inline void show_rcu_tasks_trace_gp_kthread(void) {}
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#endif
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#ifdef CONFIG_TINY_RCU
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static inline bool rcu_cpu_beenfullyonline(int cpu) { return true; }
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#else
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bool rcu_cpu_beenfullyonline(int cpu);
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#endif
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#endif /* __LINUX_RCU_H */
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