| 1 | /* SPDX-License-Identifier: GPL-2.0 */ | 
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| 2 | /*  linux/include/linux/clockchips.h | 
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| 3 | * | 
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| 4 | *  This file contains the structure definitions for clockchips. | 
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| 5 | * | 
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| 6 | *  If you are not a clockchip, or the time of day code, you should | 
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| 7 | *  not be including this file! | 
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| 8 | */ | 
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| 9 | #ifndef _LINUX_CLOCKCHIPS_H | 
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| 10 | #define _LINUX_CLOCKCHIPS_H | 
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| 11 |  | 
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| 12 | #ifdef CONFIG_GENERIC_CLOCKEVENTS | 
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| 13 |  | 
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| 14 | # include <linux/clocksource.h> | 
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| 15 | # include <linux/cpumask_types.h> | 
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| 16 | # include <linux/ktime.h> | 
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| 17 | # include <linux/notifier.h> | 
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| 18 |  | 
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| 19 | struct clock_event_device; | 
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| 20 | struct module; | 
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| 21 |  | 
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| 22 | /* | 
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| 23 | * Possible states of a clock event device. | 
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| 24 | * | 
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| 25 | * DETACHED:	Device is not used by clockevents core. Initial state or can be | 
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| 26 | *		reached from SHUTDOWN. | 
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| 27 | * SHUTDOWN:	Device is powered-off. Can be reached from PERIODIC or ONESHOT. | 
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| 28 | * PERIODIC:	Device is programmed to generate events periodically. Can be | 
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| 29 | *		reached from DETACHED or SHUTDOWN. | 
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| 30 | * ONESHOT:	Device is programmed to generate event only once. Can be reached | 
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| 31 | *		from DETACHED or SHUTDOWN. | 
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| 32 | * ONESHOT_STOPPED: Device was programmed in ONESHOT mode and is temporarily | 
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| 33 | *		    stopped. | 
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| 34 | */ | 
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| 35 | enum clock_event_state { | 
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| 36 | CLOCK_EVT_STATE_DETACHED, | 
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| 37 | CLOCK_EVT_STATE_SHUTDOWN, | 
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| 38 | CLOCK_EVT_STATE_PERIODIC, | 
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| 39 | CLOCK_EVT_STATE_ONESHOT, | 
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| 40 | CLOCK_EVT_STATE_ONESHOT_STOPPED, | 
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| 41 | }; | 
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| 42 |  | 
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| 43 | /* | 
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| 44 | * Clock event features | 
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| 45 | */ | 
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| 46 | # define CLOCK_EVT_FEAT_PERIODIC	0x000001 | 
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| 47 | # define CLOCK_EVT_FEAT_ONESHOT		0x000002 | 
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| 48 | # define CLOCK_EVT_FEAT_KTIME		0x000004 | 
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| 49 |  | 
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| 50 | /* | 
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| 51 | * x86(64) specific (mis)features: | 
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| 52 | * | 
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| 53 | * - Clockevent source stops in C3 State and needs broadcast support. | 
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| 54 | * - Local APIC timer is used as a dummy device. | 
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| 55 | */ | 
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| 56 | # define CLOCK_EVT_FEAT_C3STOP		0x000008 | 
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| 57 | # define CLOCK_EVT_FEAT_DUMMY		0x000010 | 
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| 58 |  | 
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| 59 | /* | 
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| 60 | * Core shall set the interrupt affinity dynamically in broadcast mode | 
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| 61 | */ | 
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| 62 | # define CLOCK_EVT_FEAT_DYNIRQ		0x000020 | 
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| 63 | # define CLOCK_EVT_FEAT_PERCPU		0x000040 | 
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| 64 |  | 
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| 65 | /* | 
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| 66 | * Clockevent device is based on a hrtimer for broadcast | 
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| 67 | */ | 
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| 68 | # define CLOCK_EVT_FEAT_HRTIMER		0x000080 | 
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| 69 |  | 
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| 70 | /** | 
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| 71 | * struct clock_event_device - clock event device descriptor | 
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| 72 | * @event_handler:	Assigned by the framework to be called by the low | 
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| 73 | *			level handler of the event source | 
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| 74 | * @set_next_event:	set next event function using a clocksource delta | 
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| 75 | * @set_next_ktime:	set next event function using a direct ktime value | 
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| 76 | * @next_event:		local storage for the next event in oneshot mode | 
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| 77 | * @max_delta_ns:	maximum delta value in ns | 
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| 78 | * @min_delta_ns:	minimum delta value in ns | 
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| 79 | * @mult:		nanosecond to cycles multiplier | 
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| 80 | * @shift:		nanoseconds to cycles divisor (power of two) | 
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| 81 | * @state_use_accessors:current state of the device, assigned by the core code | 
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| 82 | * @features:		features | 
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| 83 | * @retries:		number of forced programming retries | 
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| 84 | * @set_state_periodic:	switch state to periodic | 
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| 85 | * @set_state_oneshot:	switch state to oneshot | 
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| 86 | * @set_state_oneshot_stopped: switch state to oneshot_stopped | 
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| 87 | * @set_state_shutdown:	switch state to shutdown | 
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| 88 | * @tick_resume:	resume clkevt device | 
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| 89 | * @broadcast:		function to broadcast events | 
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| 90 | * @min_delta_ticks:	minimum delta value in ticks stored for reconfiguration | 
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| 91 | * @max_delta_ticks:	maximum delta value in ticks stored for reconfiguration | 
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| 92 | * @name:		ptr to clock event name | 
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| 93 | * @rating:		variable to rate clock event devices | 
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| 94 | * @irq:		IRQ number (only for non CPU local devices) | 
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| 95 | * @bound_on:		Bound on CPU | 
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| 96 | * @cpumask:		cpumask to indicate for which CPUs this device works | 
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| 97 | * @list:		list head for the management code | 
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| 98 | * @owner:		module reference | 
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| 99 | */ | 
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| 100 | struct clock_event_device { | 
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| 101 | void			(*event_handler)(struct clock_event_device *); | 
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| 102 | int			(*set_next_event)(unsigned long evt, struct clock_event_device *); | 
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| 103 | int			(*set_next_ktime)(ktime_t expires, struct clock_event_device *); | 
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| 104 | ktime_t			next_event; | 
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| 105 | u64			max_delta_ns; | 
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| 106 | u64			min_delta_ns; | 
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| 107 | u32			mult; | 
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| 108 | u32			shift; | 
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| 109 | enum clock_event_state	state_use_accessors; | 
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| 110 | unsigned int		features; | 
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| 111 | unsigned long		retries; | 
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| 112 |  | 
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| 113 | int			(*set_state_periodic)(struct clock_event_device *); | 
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| 114 | int			(*set_state_oneshot)(struct clock_event_device *); | 
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| 115 | int			(*set_state_oneshot_stopped)(struct clock_event_device *); | 
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| 116 | int			(*set_state_shutdown)(struct clock_event_device *); | 
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| 117 | int			(*tick_resume)(struct clock_event_device *); | 
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| 118 |  | 
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| 119 | void			(*broadcast)(const struct cpumask *mask); | 
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| 120 | void			(*suspend)(struct clock_event_device *); | 
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| 121 | void			(*resume)(struct clock_event_device *); | 
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| 122 | unsigned long		min_delta_ticks; | 
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| 123 | unsigned long		max_delta_ticks; | 
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| 124 |  | 
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| 125 | const char		*name; | 
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| 126 | int			rating; | 
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| 127 | int			irq; | 
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| 128 | int			bound_on; | 
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| 129 | const struct cpumask	*cpumask; | 
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| 130 | struct list_head	list; | 
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| 131 | struct module		*owner; | 
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| 132 | } ____cacheline_aligned; | 
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| 133 |  | 
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| 134 | /* Helpers to verify state of a clockevent device */ | 
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| 135 | static inline bool clockevent_state_detached(struct clock_event_device *dev) | 
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| 136 | { | 
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| 137 | return dev->state_use_accessors == CLOCK_EVT_STATE_DETACHED; | 
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| 138 | } | 
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| 139 |  | 
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| 140 | static inline bool clockevent_state_shutdown(struct clock_event_device *dev) | 
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| 141 | { | 
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| 142 | return dev->state_use_accessors == CLOCK_EVT_STATE_SHUTDOWN; | 
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| 143 | } | 
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| 144 |  | 
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| 145 | static inline bool clockevent_state_periodic(struct clock_event_device *dev) | 
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| 146 | { | 
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| 147 | return dev->state_use_accessors == CLOCK_EVT_STATE_PERIODIC; | 
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| 148 | } | 
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| 149 |  | 
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| 150 | static inline bool clockevent_state_oneshot(struct clock_event_device *dev) | 
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| 151 | { | 
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| 152 | return dev->state_use_accessors == CLOCK_EVT_STATE_ONESHOT; | 
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| 153 | } | 
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| 154 |  | 
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| 155 | static inline bool clockevent_state_oneshot_stopped(struct clock_event_device *dev) | 
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| 156 | { | 
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| 157 | return dev->state_use_accessors == CLOCK_EVT_STATE_ONESHOT_STOPPED; | 
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| 158 | } | 
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| 159 |  | 
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| 160 | /* | 
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| 161 | * Calculate a multiplication factor for scaled math, which is used to convert | 
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| 162 | * nanoseconds based values to clock ticks: | 
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| 163 | * | 
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| 164 | * clock_ticks = (nanoseconds * factor) >> shift. | 
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| 165 | * | 
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| 166 | * div_sc is the rearranged equation to calculate a factor from a given clock | 
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| 167 | * ticks / nanoseconds ratio: | 
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| 168 | * | 
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| 169 | * factor = (clock_ticks << shift) / nanoseconds | 
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| 170 | */ | 
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| 171 | static inline unsigned long | 
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| 172 | div_sc(unsigned long ticks, unsigned long nsec, int shift) | 
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| 173 | { | 
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| 174 | u64 tmp = ((u64)ticks) << shift; | 
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| 175 |  | 
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| 176 | do_div(tmp, nsec); | 
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| 177 |  | 
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| 178 | return (unsigned long) tmp; | 
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| 179 | } | 
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| 180 |  | 
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| 181 | /* Clock event layer functions */ | 
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| 182 | extern u64 clockevent_delta2ns(unsigned long latch, struct clock_event_device *evt); | 
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| 183 | extern void clockevents_register_device(struct clock_event_device *dev); | 
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| 184 | extern int clockevents_unbind_device(struct clock_event_device *ced, int cpu); | 
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| 185 |  | 
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| 186 | extern void clockevents_config_and_register(struct clock_event_device *dev, | 
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| 187 | u32 freq, unsigned long min_delta, | 
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| 188 | unsigned long max_delta); | 
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| 189 |  | 
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| 190 | extern int clockevents_update_freq(struct clock_event_device *ce, u32 freq); | 
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| 191 |  | 
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| 192 | static inline void | 
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| 193 | clockevents_calc_mult_shift(struct clock_event_device *ce, u32 freq, u32 maxsec) | 
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| 194 | { | 
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| 195 | return clocks_calc_mult_shift(mult: &ce->mult, shift: &ce->shift, NSEC_PER_SEC, to: freq, minsec: maxsec); | 
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| 196 | } | 
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| 197 |  | 
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| 198 | extern void clockevents_suspend(void); | 
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| 199 | extern void clockevents_resume(void); | 
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| 200 |  | 
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| 201 | # ifdef CONFIG_GENERIC_CLOCKEVENTS_BROADCAST | 
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| 202 | #  ifdef CONFIG_ARCH_HAS_TICK_BROADCAST | 
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| 203 | extern void tick_broadcast(const struct cpumask *mask); | 
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| 204 | #  else | 
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| 205 | #   define tick_broadcast	NULL | 
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| 206 | #  endif | 
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| 207 | extern int tick_receive_broadcast(void); | 
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| 208 | # endif | 
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| 209 |  | 
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| 210 | # if defined(CONFIG_GENERIC_CLOCKEVENTS_BROADCAST) && defined(CONFIG_TICK_ONESHOT) | 
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| 211 | extern void tick_setup_hrtimer_broadcast(void); | 
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| 212 | extern int tick_check_broadcast_expired(void); | 
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| 213 | # else | 
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| 214 | static __always_inline int tick_check_broadcast_expired(void) { return 0; } | 
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| 215 | static inline void tick_setup_hrtimer_broadcast(void) { } | 
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| 216 | # endif | 
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| 217 |  | 
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| 218 | #else /* !CONFIG_GENERIC_CLOCKEVENTS: */ | 
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| 219 |  | 
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| 220 | static inline void clockevents_suspend(void) { } | 
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| 221 | static inline void clockevents_resume(void) { } | 
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| 222 | static __always_inline int tick_check_broadcast_expired(void) { return 0; } | 
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| 223 | static inline void tick_setup_hrtimer_broadcast(void) { } | 
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| 224 |  | 
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| 225 | #endif /* !CONFIG_GENERIC_CLOCKEVENTS */ | 
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| 226 |  | 
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| 227 | #endif /* _LINUX_CLOCKCHIPS_H */ | 
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| 228 |  | 
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