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author | Linus Torvalds <torvalds@linux-foundation.org> | 2019-09-17 12:35:15 -0700 |
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committer | Linus Torvalds <torvalds@linux-foundation.org> | 2019-09-17 12:35:15 -0700 |
commit | 7f2444d38f6bbfa12bc15e2533d8f9daa85ca02b (patch) | |
tree | 6506ec79036890edfd9797b001391a350b5ac10f /drivers/clocksource/timer-atmel-tcb.c | |
parent | c5f12fdb8bd873aa3ffdb79512e6bdac92b257b0 (diff) | |
parent | 77b4b5420422fc037d00b8f3f0e89b2262e4ae29 (diff) |
Merge branch 'timers-core-for-linus' of git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip
Pull core timer updates from Thomas Gleixner:
"Timers and timekeeping updates:
- A large overhaul of the posix CPU timer code which is a preparation
for moving the CPU timer expiry out into task work so it can be
properly accounted on the task/process.
An update to the bogus permission checks will come later during the
merge window as feedback was not complete before heading of for
travel.
- Switch the timerqueue code to use cached rbtrees and get rid of the
homebrewn caching of the leftmost node.
- Consolidate hrtimer_init() + hrtimer_init_sleeper() calls into a
single function
- Implement the separation of hrtimers to be forced to expire in hard
interrupt context even when PREEMPT_RT is enabled and mark the
affected timers accordingly.
- Implement a mechanism for hrtimers and the timer wheel to protect
RT against priority inversion and live lock issues when a (hr)timer
which should be canceled is currently executing the callback.
Instead of infinitely spinning, the task which tries to cancel the
timer blocks on a per cpu base expiry lock which is held and
released by the (hr)timer expiry code.
- Enable the Hyper-V TSC page based sched_clock for Hyper-V guests
resulting in faster access to timekeeping functions.
- Updates to various clocksource/clockevent drivers and their device
tree bindings.
- The usual small improvements all over the place"
* 'timers-core-for-linus' of git://git.kernel.org/pub/scm/linux/kernel/git/tip/tip: (101 commits)
posix-cpu-timers: Fix permission check regression
posix-cpu-timers: Always clear head pointer on dequeue
hrtimer: Add a missing bracket and hide `migration_base' on !SMP
posix-cpu-timers: Make expiry_active check actually work correctly
posix-timers: Unbreak CONFIG_POSIX_TIMERS=n build
tick: Mark sched_timer to expire in hard interrupt context
hrtimer: Add kernel doc annotation for HRTIMER_MODE_HARD
x86/hyperv: Hide pv_ops access for CONFIG_PARAVIRT=n
posix-cpu-timers: Utilize timerqueue for storage
posix-cpu-timers: Move state tracking to struct posix_cputimers
posix-cpu-timers: Deduplicate rlimit handling
posix-cpu-timers: Remove pointless comparisons
posix-cpu-timers: Get rid of 64bit divisions
posix-cpu-timers: Consolidate timer expiry further
posix-cpu-timers: Get rid of zero checks
rlimit: Rewrite non-sensical RLIMIT_CPU comment
posix-cpu-timers: Respect INFINITY for hard RTTIME limit
posix-cpu-timers: Switch thread group sampling to array
posix-cpu-timers: Restructure expiry array
posix-cpu-timers: Remove cputime_expires
...
Diffstat (limited to 'drivers/clocksource/timer-atmel-tcb.c')
-rw-r--r-- | drivers/clocksource/timer-atmel-tcb.c | 18 |
1 files changed, 18 insertions, 0 deletions
diff --git a/drivers/clocksource/timer-atmel-tcb.c b/drivers/clocksource/timer-atmel-tcb.c index 6ed31f9def7e..7427b07495a8 100644 --- a/drivers/clocksource/timer-atmel-tcb.c +++ b/drivers/clocksource/timer-atmel-tcb.c @@ -6,6 +6,7 @@ #include <linux/irq.h> #include <linux/clk.h> +#include <linux/delay.h> #include <linux/err.h> #include <linux/ioport.h> #include <linux/io.h> @@ -125,6 +126,18 @@ static u64 notrace tc_sched_clock_read32(void) return tc_get_cycles32(&clksrc); } +static struct delay_timer tc_delay_timer; + +static unsigned long tc_delay_timer_read(void) +{ + return tc_get_cycles(&clksrc); +} + +static unsigned long notrace tc_delay_timer_read32(void) +{ + return tc_get_cycles32(&clksrc); +} + #ifdef CONFIG_GENERIC_CLOCKEVENTS struct tc_clkevt_device { @@ -432,6 +445,7 @@ static int __init tcb_clksrc_init(struct device_node *node) /* setup ony channel 0 */ tcb_setup_single_chan(&tc, best_divisor_idx); tc_sched_clock = tc_sched_clock_read32; + tc_delay_timer.read_current_timer = tc_delay_timer_read32; } else { /* we have three clocks no matter what the * underlying platform supports. @@ -444,6 +458,7 @@ static int __init tcb_clksrc_init(struct device_node *node) /* setup both channel 0 & 1 */ tcb_setup_dual_chan(&tc, best_divisor_idx); tc_sched_clock = tc_sched_clock_read; + tc_delay_timer.read_current_timer = tc_delay_timer_read; } /* and away we go! */ @@ -458,6 +473,9 @@ static int __init tcb_clksrc_init(struct device_node *node) sched_clock_register(tc_sched_clock, 32, divided_rate); + tc_delay_timer.freq = divided_rate; + register_current_timer_delay(&tc_delay_timer); + return 0; err_unregister_clksrc: |