16#ifndef ZEPHYR_INCLUDE_SYS_CLOCK_H_ 
   17#define ZEPHYR_INCLUDE_SYS_CLOCK_H_ 
   45#ifdef CONFIG_TIMEOUT_64BIT 
   51#define K_TICKS_FOREVER ((k_ticks_t) -1) 
   80#define K_TIMEOUT_EQ(a, b) ((a).ticks == (b).ticks) 
   83#define NSEC_PER_USEC 1000U 
   86#define NSEC_PER_MSEC 1000000U 
   89#define USEC_PER_MSEC 1000U 
   92#define MSEC_PER_SEC 1000U 
   95#define SEC_PER_MIN 60U 
   98#define MIN_PER_HOUR 60U 
  101#define HOUR_PER_DAY 24U 
  104#define USEC_PER_SEC ((USEC_PER_MSEC) * (MSEC_PER_SEC)) 
  107#define NSEC_PER_SEC ((NSEC_PER_USEC) * (USEC_PER_MSEC) * (MSEC_PER_SEC)) 
  112#define Z_TIMEOUT_NO_WAIT ((k_timeout_t) {0}) 
  113#if defined(__cplusplus) && ((__cplusplus - 0) < 202002L) 
  114#define Z_TIMEOUT_TICKS(t) ((k_timeout_t) { (t) }) 
  116#define Z_TIMEOUT_TICKS(t) ((k_timeout_t) { .ticks = (t) }) 
  118#define Z_FOREVER Z_TIMEOUT_TICKS(K_TICKS_FOREVER) 
  120#ifdef CONFIG_TIMEOUT_64BIT 
  121# define Z_TIMEOUT_MS(t) Z_TIMEOUT_TICKS((k_ticks_t)k_ms_to_ticks_ceil64(MAX(t, 0))) 
  122# define Z_TIMEOUT_US(t) Z_TIMEOUT_TICKS((k_ticks_t)k_us_to_ticks_ceil64(MAX(t, 0))) 
  123# define Z_TIMEOUT_NS(t) Z_TIMEOUT_TICKS((k_ticks_t)k_ns_to_ticks_ceil64(MAX(t, 0))) 
  124# define Z_TIMEOUT_CYC(t) Z_TIMEOUT_TICKS((k_ticks_t)k_cyc_to_ticks_ceil64(MAX(t, 0))) 
  125# define Z_TIMEOUT_MS_TICKS(t) ((k_ticks_t)k_ms_to_ticks_ceil64(MAX(t, 0))) 
  127# define Z_TIMEOUT_MS(t) Z_TIMEOUT_TICKS((k_ticks_t)k_ms_to_ticks_ceil32(MAX(t, 0))) 
  128# define Z_TIMEOUT_US(t) Z_TIMEOUT_TICKS((k_ticks_t)k_us_to_ticks_ceil32(MAX(t, 0))) 
  129# define Z_TIMEOUT_NS(t) Z_TIMEOUT_TICKS((k_ticks_t)k_ns_to_ticks_ceil32(MAX(t, 0))) 
  130# define Z_TIMEOUT_CYC(t) Z_TIMEOUT_TICKS((k_ticks_t)k_cyc_to_ticks_ceil32(MAX(t, 0))) 
  131# define Z_TIMEOUT_MS_TICKS(t) ((k_ticks_t)k_ms_to_ticks_ceil32(MAX(t, 0))) 
  142#define Z_TICK_ABS(t) (K_TICKS_FOREVER - 1 - (t)) 
  149#if defined(CONFIG_SYS_CLOCK_EXISTS) && \ 
  150        (CONFIG_SYS_CLOCK_HW_CYCLES_PER_SEC == 0) 
  151#error "SYS_CLOCK_HW_CYCLES_PER_SEC must be non-zero!" 
  167#ifdef CONFIG_SYS_CLOCK_EXISTS 
  169#if defined(CONFIG_TIMER_READS_ITS_FREQUENCY_AT_RUNTIME) || \ 
  170        (MSEC_PER_SEC % CONFIG_SYS_CLOCK_TICKS_PER_SEC) || \ 
  171        (CONFIG_SYS_CLOCK_HW_CYCLES_PER_SEC % CONFIG_SYS_CLOCK_TICKS_PER_SEC) 
  172#define _NEED_PRECISE_TICK_MS_CONVERSION 
  181#define SYS_CLOCK_HW_CYCLES_TO_NS_AVG(X, NCYCLES) \ 
  182        (uint32_t)(k_cyc_to_ns_floor64(X) / NCYCLES) 
 
  202#ifndef CONFIG_SYS_CLOCK_EXISTS 
  203#define sys_clock_tick_get() (0) 
  204#define sys_clock_tick_get_32() (0) 
  207#ifdef CONFIG_SYS_CLOCK_EXISTS 
  306        return timepoint.wait ? Z_FOREVER : Z_TIMEOUT_NO_WAIT;
 
  311        if (a.wait == b.wait) {
 
  314        return b.wait ? -1 : 1;
 
ZTEST_BMEM int timeout
Definition main.c:31
 
static uint64_t sys_clock_timeout_end_calc(k_timeout_t timeout)
Provided for backward compatibility.
Definition sys_clock.h:262
 
uint32_t sys_clock_tick_get_32(void)
Return the lower part of the current system tick count.
 
k_timepoint_t sys_timepoint_calc(k_timeout_t timeout)
Calculate a timepoint value.
 
int64_t sys_clock_tick_get(void)
Return the current system tick count.
 
k_timeout_t sys_timepoint_timeout(k_timepoint_t timepoint)
Remaining time to given timepoint.
 
static bool sys_timepoint_expired(k_timepoint_t timepoint)
Indicates if timepoint is expired.
Definition sys_clock.h:327
 
uint32_t k_ticks_t
Tick precision used in timeout APIs.
Definition sys_clock.h:48
 
#define K_TIMEOUT_EQ(a, b)
Compare timeouts for equality.
Definition sys_clock.h:80
 
static int sys_timepoint_cmp(k_timepoint_t a, k_timepoint_t b)
Compare two timepoint values.
Definition sys_clock.h:279
 
__UINT32_TYPE__ uint32_t
Definition stdint.h:90
 
__UINT64_TYPE__ uint64_t
Definition stdint.h:91
 
__INT64_TYPE__ int64_t
Definition stdint.h:75
 
Kernel timeout type.
Definition sys_clock.h:65
 
k_ticks_t ticks
Definition sys_clock.h:66
 
Kernel timepoint type.
Definition sys_clock.h:219
 
uint64_t tick
Definition sys_clock.h:219
 
static ZTEST_DMEM int tp
Definition main.c:35