135728b82SThomas Gleixner // SPDX-License-Identifier: GPL-2.0 25cee9645SThomas Gleixner /* 35cee9645SThomas Gleixner * Copyright (C) 1991, 1992 Linus Torvalds 45cee9645SThomas Gleixner * 558c5fc2bSThomas Gleixner * This file contains the interface functions for the various time related 658c5fc2bSThomas Gleixner * system calls: time, stime, gettimeofday, settimeofday, adjtime 758c5fc2bSThomas Gleixner * 858c5fc2bSThomas Gleixner * Modification history: 95cee9645SThomas Gleixner * 105cee9645SThomas Gleixner * 1993-09-02 Philip Gladstone 115cee9645SThomas Gleixner * Created file with time related functions from sched/core.c and adjtimex() 125cee9645SThomas Gleixner * 1993-10-08 Torsten Duwe 135cee9645SThomas Gleixner * adjtime interface update and CMOS clock write code 145cee9645SThomas Gleixner * 1995-08-13 Torsten Duwe 155cee9645SThomas Gleixner * kernel PLL updated to 1994-12-13 specs (rfc-1589) 165cee9645SThomas Gleixner * 1999-01-16 Ulrich Windl 175cee9645SThomas Gleixner * Introduced error checking for many cases in adjtimex(). 185cee9645SThomas Gleixner * Updated NTP code according to technical memorandum Jan '96 195cee9645SThomas Gleixner * "A Kernel Model for Precision Timekeeping" by Dave Mills 205cee9645SThomas Gleixner * Allow time_constant larger than MAXTC(6) for NTP v4 (MAXTC == 10) 215cee9645SThomas Gleixner * (Even though the technical memorandum forbids it) 225cee9645SThomas Gleixner * 2004-07-14 Christoph Lameter 235cee9645SThomas Gleixner * Added getnstimeofday to allow the posix timer functions to return 245cee9645SThomas Gleixner * with nanosecond accuracy 255cee9645SThomas Gleixner */ 265cee9645SThomas Gleixner 275cee9645SThomas Gleixner #include <linux/export.h> 28abcbcb80SGeert Uytterhoeven #include <linux/kernel.h> 295cee9645SThomas Gleixner #include <linux/timex.h> 305cee9645SThomas Gleixner #include <linux/capability.h> 315cee9645SThomas Gleixner #include <linux/timekeeper_internal.h> 325cee9645SThomas Gleixner #include <linux/errno.h> 335cee9645SThomas Gleixner #include <linux/syscalls.h> 345cee9645SThomas Gleixner #include <linux/security.h> 355cee9645SThomas Gleixner #include <linux/fs.h> 365cee9645SThomas Gleixner #include <linux/math64.h> 375cee9645SThomas Gleixner #include <linux/ptrace.h> 385cee9645SThomas Gleixner 397c0f6ba6SLinus Torvalds #include <linux/uaccess.h> 403a4d44b6SAl Viro #include <linux/compat.h> 415cee9645SThomas Gleixner #include <asm/unistd.h> 425cee9645SThomas Gleixner 430a227985SNicholas Mc Guire #include <generated/timeconst.h> 448b094cd0SThomas Gleixner #include "timekeeping.h" 455cee9645SThomas Gleixner 465cee9645SThomas Gleixner /* 475cee9645SThomas Gleixner * The timezone where the local system is located. Used as a default by some 485cee9645SThomas Gleixner * programs who obtain this value by using gettimeofday. 495cee9645SThomas Gleixner */ 505cee9645SThomas Gleixner struct timezone sys_tz; 515cee9645SThomas Gleixner 525cee9645SThomas Gleixner EXPORT_SYMBOL(sys_tz); 535cee9645SThomas Gleixner 545cee9645SThomas Gleixner #ifdef __ARCH_WANT_SYS_TIME 555cee9645SThomas Gleixner 565cee9645SThomas Gleixner /* 575cee9645SThomas Gleixner * sys_time() can be implemented in user-level using 585cee9645SThomas Gleixner * sys_gettimeofday(). Is this for backwards compatibility? If so, 595cee9645SThomas Gleixner * why not move it into the appropriate arch directory (for those 605cee9645SThomas Gleixner * architectures that need it). 615cee9645SThomas Gleixner */ 625cee9645SThomas Gleixner SYSCALL_DEFINE1(time, time_t __user *, tloc) 635cee9645SThomas Gleixner { 64f5a89295SArnd Bergmann time_t i = (time_t)ktime_get_real_seconds(); 655cee9645SThomas Gleixner 665cee9645SThomas Gleixner if (tloc) { 675cee9645SThomas Gleixner if (put_user(i,tloc)) 685cee9645SThomas Gleixner return -EFAULT; 695cee9645SThomas Gleixner } 705cee9645SThomas Gleixner force_successful_syscall_return(); 715cee9645SThomas Gleixner return i; 725cee9645SThomas Gleixner } 735cee9645SThomas Gleixner 745cee9645SThomas Gleixner /* 755cee9645SThomas Gleixner * sys_stime() can be implemented in user-level using 765cee9645SThomas Gleixner * sys_settimeofday(). Is this for backwards compatibility? If so, 775cee9645SThomas Gleixner * why not move it into the appropriate arch directory (for those 785cee9645SThomas Gleixner * architectures that need it). 795cee9645SThomas Gleixner */ 805cee9645SThomas Gleixner 815cee9645SThomas Gleixner SYSCALL_DEFINE1(stime, time_t __user *, tptr) 825cee9645SThomas Gleixner { 834eb1bca1SArnd Bergmann struct timespec64 tv; 845cee9645SThomas Gleixner int err; 855cee9645SThomas Gleixner 865cee9645SThomas Gleixner if (get_user(tv.tv_sec, tptr)) 875cee9645SThomas Gleixner return -EFAULT; 885cee9645SThomas Gleixner 895cee9645SThomas Gleixner tv.tv_nsec = 0; 905cee9645SThomas Gleixner 914eb1bca1SArnd Bergmann err = security_settime64(&tv, NULL); 925cee9645SThomas Gleixner if (err) 935cee9645SThomas Gleixner return err; 945cee9645SThomas Gleixner 954eb1bca1SArnd Bergmann do_settimeofday64(&tv); 965cee9645SThomas Gleixner return 0; 975cee9645SThomas Gleixner } 985cee9645SThomas Gleixner 995cee9645SThomas Gleixner #endif /* __ARCH_WANT_SYS_TIME */ 1005cee9645SThomas Gleixner 101b180db2cSAl Viro #ifdef CONFIG_COMPAT 102b180db2cSAl Viro #ifdef __ARCH_WANT_COMPAT_SYS_TIME 103b180db2cSAl Viro 1049afc5eeeSArnd Bergmann /* old_time32_t is a 32 bit "long" and needs to get converted. */ 1059afc5eeeSArnd Bergmann COMPAT_SYSCALL_DEFINE1(time, old_time32_t __user *, tloc) 106b180db2cSAl Viro { 1079afc5eeeSArnd Bergmann old_time32_t i; 108b180db2cSAl Viro 1099afc5eeeSArnd Bergmann i = (old_time32_t)ktime_get_real_seconds(); 110b180db2cSAl Viro 111b180db2cSAl Viro if (tloc) { 112b180db2cSAl Viro if (put_user(i,tloc)) 113b180db2cSAl Viro return -EFAULT; 114b180db2cSAl Viro } 115b180db2cSAl Viro force_successful_syscall_return(); 116b180db2cSAl Viro return i; 117b180db2cSAl Viro } 118b180db2cSAl Viro 1199afc5eeeSArnd Bergmann COMPAT_SYSCALL_DEFINE1(stime, old_time32_t __user *, tptr) 120b180db2cSAl Viro { 1214eb1bca1SArnd Bergmann struct timespec64 tv; 122b180db2cSAl Viro int err; 123b180db2cSAl Viro 124b180db2cSAl Viro if (get_user(tv.tv_sec, tptr)) 125b180db2cSAl Viro return -EFAULT; 126b180db2cSAl Viro 127b180db2cSAl Viro tv.tv_nsec = 0; 128b180db2cSAl Viro 1294eb1bca1SArnd Bergmann err = security_settime64(&tv, NULL); 130b180db2cSAl Viro if (err) 131b180db2cSAl Viro return err; 132b180db2cSAl Viro 1334eb1bca1SArnd Bergmann do_settimeofday64(&tv); 134b180db2cSAl Viro return 0; 135b180db2cSAl Viro } 136b180db2cSAl Viro 137b180db2cSAl Viro #endif /* __ARCH_WANT_COMPAT_SYS_TIME */ 138b180db2cSAl Viro #endif 139b180db2cSAl Viro 1405cee9645SThomas Gleixner SYSCALL_DEFINE2(gettimeofday, struct timeval __user *, tv, 1415cee9645SThomas Gleixner struct timezone __user *, tz) 1425cee9645SThomas Gleixner { 1435cee9645SThomas Gleixner if (likely(tv != NULL)) { 14433e26418SArnd Bergmann struct timespec64 ts; 14533e26418SArnd Bergmann 14633e26418SArnd Bergmann ktime_get_real_ts64(&ts); 14733e26418SArnd Bergmann if (put_user(ts.tv_sec, &tv->tv_sec) || 14833e26418SArnd Bergmann put_user(ts.tv_nsec / 1000, &tv->tv_usec)) 1495cee9645SThomas Gleixner return -EFAULT; 1505cee9645SThomas Gleixner } 1515cee9645SThomas Gleixner if (unlikely(tz != NULL)) { 1525cee9645SThomas Gleixner if (copy_to_user(tz, &sys_tz, sizeof(sys_tz))) 1535cee9645SThomas Gleixner return -EFAULT; 1545cee9645SThomas Gleixner } 1555cee9645SThomas Gleixner return 0; 1565cee9645SThomas Gleixner } 1575cee9645SThomas Gleixner 1585cee9645SThomas Gleixner /* 1595cee9645SThomas Gleixner * In case for some reason the CMOS clock has not already been running 1605cee9645SThomas Gleixner * in UTC, but in some local time: The first time we set the timezone, 1615cee9645SThomas Gleixner * we will warp the clock so that it is ticking UTC time instead of 1625cee9645SThomas Gleixner * local time. Presumably, if someone is setting the timezone then we 1635cee9645SThomas Gleixner * are running in an environment where the programs understand about 1645cee9645SThomas Gleixner * timezones. This should be done at boot time in the /etc/rc script, 1655cee9645SThomas Gleixner * as soon as possible, so that the clock can be set right. Otherwise, 1665cee9645SThomas Gleixner * various programs will get confused when the clock gets warped. 1675cee9645SThomas Gleixner */ 1685cee9645SThomas Gleixner 16986d34732SBaolin Wang int do_sys_settimeofday64(const struct timespec64 *tv, const struct timezone *tz) 1705cee9645SThomas Gleixner { 1715cee9645SThomas Gleixner static int firsttime = 1; 1725cee9645SThomas Gleixner int error = 0; 1735cee9645SThomas Gleixner 17486d34732SBaolin Wang if (tv && !timespec64_valid(tv)) 1755cee9645SThomas Gleixner return -EINVAL; 1765cee9645SThomas Gleixner 17786d34732SBaolin Wang error = security_settime64(tv, tz); 1785cee9645SThomas Gleixner if (error) 1795cee9645SThomas Gleixner return error; 1805cee9645SThomas Gleixner 1815cee9645SThomas Gleixner if (tz) { 1826f7d7984SSasha Levin /* Verify we're witin the +-15 hrs range */ 1836f7d7984SSasha Levin if (tz->tz_minuteswest > 15*60 || tz->tz_minuteswest < -15*60) 1846f7d7984SSasha Levin return -EINVAL; 1856f7d7984SSasha Levin 1865cee9645SThomas Gleixner sys_tz = *tz; 1875cee9645SThomas Gleixner update_vsyscall_tz(); 1885cee9645SThomas Gleixner if (firsttime) { 1895cee9645SThomas Gleixner firsttime = 0; 1905cee9645SThomas Gleixner if (!tv) 191e0956dccSArnd Bergmann timekeeping_warp_clock(); 1925cee9645SThomas Gleixner } 1935cee9645SThomas Gleixner } 1945cee9645SThomas Gleixner if (tv) 19586d34732SBaolin Wang return do_settimeofday64(tv); 1965cee9645SThomas Gleixner return 0; 1975cee9645SThomas Gleixner } 1985cee9645SThomas Gleixner 1995cee9645SThomas Gleixner SYSCALL_DEFINE2(settimeofday, struct timeval __user *, tv, 2005cee9645SThomas Gleixner struct timezone __user *, tz) 2015cee9645SThomas Gleixner { 2022ac00f17SDeepa Dinamani struct timespec64 new_ts; 2035cee9645SThomas Gleixner struct timeval user_tv; 2045cee9645SThomas Gleixner struct timezone new_tz; 2055cee9645SThomas Gleixner 2065cee9645SThomas Gleixner if (tv) { 2075cee9645SThomas Gleixner if (copy_from_user(&user_tv, tv, sizeof(*tv))) 2085cee9645SThomas Gleixner return -EFAULT; 2096ada1fc0SSasha Levin 2106ada1fc0SSasha Levin if (!timeval_valid(&user_tv)) 2116ada1fc0SSasha Levin return -EINVAL; 2126ada1fc0SSasha Levin 2135cee9645SThomas Gleixner new_ts.tv_sec = user_tv.tv_sec; 2145cee9645SThomas Gleixner new_ts.tv_nsec = user_tv.tv_usec * NSEC_PER_USEC; 2155cee9645SThomas Gleixner } 2165cee9645SThomas Gleixner if (tz) { 2175cee9645SThomas Gleixner if (copy_from_user(&new_tz, tz, sizeof(*tz))) 2185cee9645SThomas Gleixner return -EFAULT; 2195cee9645SThomas Gleixner } 2205cee9645SThomas Gleixner 2212ac00f17SDeepa Dinamani return do_sys_settimeofday64(tv ? &new_ts : NULL, tz ? &new_tz : NULL); 2225cee9645SThomas Gleixner } 2235cee9645SThomas Gleixner 2242b2d0285SAl Viro #ifdef CONFIG_COMPAT 2259afc5eeeSArnd Bergmann COMPAT_SYSCALL_DEFINE2(gettimeofday, struct old_timeval32 __user *, tv, 2262b2d0285SAl Viro struct timezone __user *, tz) 2272b2d0285SAl Viro { 2282b2d0285SAl Viro if (tv) { 22933e26418SArnd Bergmann struct timespec64 ts; 2302b2d0285SAl Viro 23133e26418SArnd Bergmann ktime_get_real_ts64(&ts); 23233e26418SArnd Bergmann if (put_user(ts.tv_sec, &tv->tv_sec) || 23333e26418SArnd Bergmann put_user(ts.tv_nsec / 1000, &tv->tv_usec)) 2342b2d0285SAl Viro return -EFAULT; 2352b2d0285SAl Viro } 2362b2d0285SAl Viro if (tz) { 2372b2d0285SAl Viro if (copy_to_user(tz, &sys_tz, sizeof(sys_tz))) 2382b2d0285SAl Viro return -EFAULT; 2392b2d0285SAl Viro } 2402b2d0285SAl Viro 2412b2d0285SAl Viro return 0; 2422b2d0285SAl Viro } 2432b2d0285SAl Viro 2449afc5eeeSArnd Bergmann COMPAT_SYSCALL_DEFINE2(settimeofday, struct old_timeval32 __user *, tv, 2452b2d0285SAl Viro struct timezone __user *, tz) 2462b2d0285SAl Viro { 2472b2d0285SAl Viro struct timespec64 new_ts; 2482b2d0285SAl Viro struct timeval user_tv; 2492b2d0285SAl Viro struct timezone new_tz; 2502b2d0285SAl Viro 2512b2d0285SAl Viro if (tv) { 2522b2d0285SAl Viro if (compat_get_timeval(&user_tv, tv)) 2532b2d0285SAl Viro return -EFAULT; 2542b2d0285SAl Viro new_ts.tv_sec = user_tv.tv_sec; 2552b2d0285SAl Viro new_ts.tv_nsec = user_tv.tv_usec * NSEC_PER_USEC; 2562b2d0285SAl Viro } 2572b2d0285SAl Viro if (tz) { 2582b2d0285SAl Viro if (copy_from_user(&new_tz, tz, sizeof(*tz))) 2592b2d0285SAl Viro return -EFAULT; 2602b2d0285SAl Viro } 2612b2d0285SAl Viro 2622b2d0285SAl Viro return do_sys_settimeofday64(tv ? &new_ts : NULL, tz ? &new_tz : NULL); 2632b2d0285SAl Viro } 2642b2d0285SAl Viro #endif 2652b2d0285SAl Viro 2665cee9645SThomas Gleixner SYSCALL_DEFINE1(adjtimex, struct timex __user *, txc_p) 2675cee9645SThomas Gleixner { 268*ead25417SDeepa Dinamani struct __kernel_timex txc; /* Local copy of parameter */ 2695cee9645SThomas Gleixner int ret; 2705cee9645SThomas Gleixner 2715cee9645SThomas Gleixner /* Copy the user data space into the kernel copy 2725cee9645SThomas Gleixner * structure. But bear in mind that the structures 2735cee9645SThomas Gleixner * may change 2745cee9645SThomas Gleixner */ 275*ead25417SDeepa Dinamani if (copy_from_user(&txc, txc_p, sizeof(struct __kernel_timex))) 2765cee9645SThomas Gleixner return -EFAULT; 2775cee9645SThomas Gleixner ret = do_adjtimex(&txc); 278*ead25417SDeepa Dinamani return copy_to_user(txc_p, &txc, sizeof(struct __kernel_timex)) ? -EFAULT : ret; 2795cee9645SThomas Gleixner } 2805cee9645SThomas Gleixner 2814d5f007eSArnd Bergmann #ifdef CONFIG_COMPAT_32BIT_TIME 282*ead25417SDeepa Dinamani int get_old_timex32(struct __kernel_timex *txc, const struct old_timex32 __user *utp) 2834d5f007eSArnd Bergmann { 2844d5f007eSArnd Bergmann struct old_timex32 tx32; 2853a4d44b6SAl Viro 286*ead25417SDeepa Dinamani memset(txc, 0, sizeof(struct __kernel_timex)); 2874d5f007eSArnd Bergmann if (copy_from_user(&tx32, utp, sizeof(struct old_timex32))) 2884d5f007eSArnd Bergmann return -EFAULT; 2894d5f007eSArnd Bergmann 2904d5f007eSArnd Bergmann txc->modes = tx32.modes; 2914d5f007eSArnd Bergmann txc->offset = tx32.offset; 2924d5f007eSArnd Bergmann txc->freq = tx32.freq; 2934d5f007eSArnd Bergmann txc->maxerror = tx32.maxerror; 2944d5f007eSArnd Bergmann txc->esterror = tx32.esterror; 2954d5f007eSArnd Bergmann txc->status = tx32.status; 2964d5f007eSArnd Bergmann txc->constant = tx32.constant; 2974d5f007eSArnd Bergmann txc->precision = tx32.precision; 2984d5f007eSArnd Bergmann txc->tolerance = tx32.tolerance; 2994d5f007eSArnd Bergmann txc->time.tv_sec = tx32.time.tv_sec; 3004d5f007eSArnd Bergmann txc->time.tv_usec = tx32.time.tv_usec; 3014d5f007eSArnd Bergmann txc->tick = tx32.tick; 3024d5f007eSArnd Bergmann txc->ppsfreq = tx32.ppsfreq; 3034d5f007eSArnd Bergmann txc->jitter = tx32.jitter; 3044d5f007eSArnd Bergmann txc->shift = tx32.shift; 3054d5f007eSArnd Bergmann txc->stabil = tx32.stabil; 3064d5f007eSArnd Bergmann txc->jitcnt = tx32.jitcnt; 3074d5f007eSArnd Bergmann txc->calcnt = tx32.calcnt; 3084d5f007eSArnd Bergmann txc->errcnt = tx32.errcnt; 3094d5f007eSArnd Bergmann txc->stbcnt = tx32.stbcnt; 3104d5f007eSArnd Bergmann 3114d5f007eSArnd Bergmann return 0; 3124d5f007eSArnd Bergmann } 3134d5f007eSArnd Bergmann 314*ead25417SDeepa Dinamani int put_old_timex32(struct old_timex32 __user *utp, const struct __kernel_timex *txc) 3154d5f007eSArnd Bergmann { 3164d5f007eSArnd Bergmann struct old_timex32 tx32; 3174d5f007eSArnd Bergmann 3184d5f007eSArnd Bergmann memset(&tx32, 0, sizeof(struct old_timex32)); 3194d5f007eSArnd Bergmann tx32.modes = txc->modes; 3204d5f007eSArnd Bergmann tx32.offset = txc->offset; 3214d5f007eSArnd Bergmann tx32.freq = txc->freq; 3224d5f007eSArnd Bergmann tx32.maxerror = txc->maxerror; 3234d5f007eSArnd Bergmann tx32.esterror = txc->esterror; 3244d5f007eSArnd Bergmann tx32.status = txc->status; 3254d5f007eSArnd Bergmann tx32.constant = txc->constant; 3264d5f007eSArnd Bergmann tx32.precision = txc->precision; 3274d5f007eSArnd Bergmann tx32.tolerance = txc->tolerance; 3284d5f007eSArnd Bergmann tx32.time.tv_sec = txc->time.tv_sec; 3294d5f007eSArnd Bergmann tx32.time.tv_usec = txc->time.tv_usec; 3304d5f007eSArnd Bergmann tx32.tick = txc->tick; 3314d5f007eSArnd Bergmann tx32.ppsfreq = txc->ppsfreq; 3324d5f007eSArnd Bergmann tx32.jitter = txc->jitter; 3334d5f007eSArnd Bergmann tx32.shift = txc->shift; 3344d5f007eSArnd Bergmann tx32.stabil = txc->stabil; 3354d5f007eSArnd Bergmann tx32.jitcnt = txc->jitcnt; 3364d5f007eSArnd Bergmann tx32.calcnt = txc->calcnt; 3374d5f007eSArnd Bergmann tx32.errcnt = txc->errcnt; 3384d5f007eSArnd Bergmann tx32.stbcnt = txc->stbcnt; 3394d5f007eSArnd Bergmann tx32.tai = txc->tai; 3404d5f007eSArnd Bergmann if (copy_to_user(utp, &tx32, sizeof(struct old_timex32))) 3414d5f007eSArnd Bergmann return -EFAULT; 3424d5f007eSArnd Bergmann return 0; 3434d5f007eSArnd Bergmann } 3444d5f007eSArnd Bergmann 3454d5f007eSArnd Bergmann COMPAT_SYSCALL_DEFINE1(adjtimex, struct old_timex32 __user *, utp) 3463a4d44b6SAl Viro { 347*ead25417SDeepa Dinamani struct __kernel_timex txc; 3483a4d44b6SAl Viro int err, ret; 3493a4d44b6SAl Viro 3504d5f007eSArnd Bergmann err = get_old_timex32(&txc, utp); 3513a4d44b6SAl Viro if (err) 3523a4d44b6SAl Viro return err; 3533a4d44b6SAl Viro 3543a4d44b6SAl Viro ret = do_adjtimex(&txc); 3553a4d44b6SAl Viro 3564d5f007eSArnd Bergmann err = put_old_timex32(utp, &txc); 3573a4d44b6SAl Viro if (err) 3583a4d44b6SAl Viro return err; 3593a4d44b6SAl Viro 3603a4d44b6SAl Viro return ret; 3613a4d44b6SAl Viro } 3623a4d44b6SAl Viro #endif 3633a4d44b6SAl Viro 3645cee9645SThomas Gleixner /* 3655cee9645SThomas Gleixner * Convert jiffies to milliseconds and back. 3665cee9645SThomas Gleixner * 3675cee9645SThomas Gleixner * Avoid unnecessary multiplications/divisions in the 3685cee9645SThomas Gleixner * two most common HZ cases: 3695cee9645SThomas Gleixner */ 3705cee9645SThomas Gleixner unsigned int jiffies_to_msecs(const unsigned long j) 3715cee9645SThomas Gleixner { 3725cee9645SThomas Gleixner #if HZ <= MSEC_PER_SEC && !(MSEC_PER_SEC % HZ) 3735cee9645SThomas Gleixner return (MSEC_PER_SEC / HZ) * j; 3745cee9645SThomas Gleixner #elif HZ > MSEC_PER_SEC && !(HZ % MSEC_PER_SEC) 3755cee9645SThomas Gleixner return (j + (HZ / MSEC_PER_SEC) - 1)/(HZ / MSEC_PER_SEC); 3765cee9645SThomas Gleixner #else 3775cee9645SThomas Gleixner # if BITS_PER_LONG == 32 378abcbcb80SGeert Uytterhoeven return (HZ_TO_MSEC_MUL32 * j + (1ULL << HZ_TO_MSEC_SHR32) - 1) >> 379abcbcb80SGeert Uytterhoeven HZ_TO_MSEC_SHR32; 3805cee9645SThomas Gleixner # else 381abcbcb80SGeert Uytterhoeven return DIV_ROUND_UP(j * HZ_TO_MSEC_NUM, HZ_TO_MSEC_DEN); 3825cee9645SThomas Gleixner # endif 3835cee9645SThomas Gleixner #endif 3845cee9645SThomas Gleixner } 3855cee9645SThomas Gleixner EXPORT_SYMBOL(jiffies_to_msecs); 3865cee9645SThomas Gleixner 3875cee9645SThomas Gleixner unsigned int jiffies_to_usecs(const unsigned long j) 3885cee9645SThomas Gleixner { 389e0758676SFrederic Weisbecker /* 390e0758676SFrederic Weisbecker * Hz usually doesn't go much further MSEC_PER_SEC. 391e0758676SFrederic Weisbecker * jiffies_to_usecs() and usecs_to_jiffies() depend on that. 392e0758676SFrederic Weisbecker */ 393e0758676SFrederic Weisbecker BUILD_BUG_ON(HZ > USEC_PER_SEC); 394e0758676SFrederic Weisbecker 395e0758676SFrederic Weisbecker #if !(USEC_PER_SEC % HZ) 3965cee9645SThomas Gleixner return (USEC_PER_SEC / HZ) * j; 3975cee9645SThomas Gleixner #else 3985cee9645SThomas Gleixner # if BITS_PER_LONG == 32 3995cee9645SThomas Gleixner return (HZ_TO_USEC_MUL32 * j) >> HZ_TO_USEC_SHR32; 4005cee9645SThomas Gleixner # else 4015cee9645SThomas Gleixner return (j * HZ_TO_USEC_NUM) / HZ_TO_USEC_DEN; 4025cee9645SThomas Gleixner # endif 4035cee9645SThomas Gleixner #endif 4045cee9645SThomas Gleixner } 4055cee9645SThomas Gleixner EXPORT_SYMBOL(jiffies_to_usecs); 4065cee9645SThomas Gleixner 40790b6ce9cSpang.xunlei /* 40890b6ce9cSpang.xunlei * mktime64 - Converts date to seconds. 40990b6ce9cSpang.xunlei * Converts Gregorian date to seconds since 1970-01-01 00:00:00. 4105cee9645SThomas Gleixner * Assumes input in normal date format, i.e. 1980-12-31 23:59:59 4115cee9645SThomas Gleixner * => year=1980, mon=12, day=31, hour=23, min=59, sec=59. 4125cee9645SThomas Gleixner * 4135cee9645SThomas Gleixner * [For the Julian calendar (which was used in Russia before 1917, 4145cee9645SThomas Gleixner * Britain & colonies before 1752, anywhere else before 1582, 4155cee9645SThomas Gleixner * and is still in use by some communities) leave out the 4165cee9645SThomas Gleixner * -year/100+year/400 terms, and add 10.] 4175cee9645SThomas Gleixner * 4185cee9645SThomas Gleixner * This algorithm was first published by Gauss (I think). 419ede5147dSDavid Howells * 420ede5147dSDavid Howells * A leap second can be indicated by calling this function with sec as 421ede5147dSDavid Howells * 60 (allowable under ISO 8601). The leap second is treated the same 422ede5147dSDavid Howells * as the following second since they don't exist in UNIX time. 423ede5147dSDavid Howells * 424ede5147dSDavid Howells * An encoding of midnight at the end of the day as 24:00:00 - ie. midnight 425ede5147dSDavid Howells * tomorrow - (allowable under ISO 8601) is supported. 4265cee9645SThomas Gleixner */ 42790b6ce9cSpang.xunlei time64_t mktime64(const unsigned int year0, const unsigned int mon0, 4285cee9645SThomas Gleixner const unsigned int day, const unsigned int hour, 4295cee9645SThomas Gleixner const unsigned int min, const unsigned int sec) 4305cee9645SThomas Gleixner { 4315cee9645SThomas Gleixner unsigned int mon = mon0, year = year0; 4325cee9645SThomas Gleixner 4335cee9645SThomas Gleixner /* 1..12 -> 11,12,1..10 */ 4345cee9645SThomas Gleixner if (0 >= (int) (mon -= 2)) { 4355cee9645SThomas Gleixner mon += 12; /* Puts Feb last since it has leap day */ 4365cee9645SThomas Gleixner year -= 1; 4375cee9645SThomas Gleixner } 4385cee9645SThomas Gleixner 43990b6ce9cSpang.xunlei return ((((time64_t) 4405cee9645SThomas Gleixner (year/4 - year/100 + year/400 + 367*mon/12 + day) + 4415cee9645SThomas Gleixner year*365 - 719499 442ede5147dSDavid Howells )*24 + hour /* now have hours - midnight tomorrow handled here */ 4435cee9645SThomas Gleixner )*60 + min /* now have minutes */ 4445cee9645SThomas Gleixner )*60 + sec; /* finally seconds */ 4455cee9645SThomas Gleixner } 44690b6ce9cSpang.xunlei EXPORT_SYMBOL(mktime64); 4475cee9645SThomas Gleixner 4485cee9645SThomas Gleixner /** 4495cee9645SThomas Gleixner * ns_to_timespec - Convert nanoseconds to timespec 4505cee9645SThomas Gleixner * @nsec: the nanoseconds value to be converted 4515cee9645SThomas Gleixner * 4525cee9645SThomas Gleixner * Returns the timespec representation of the nsec parameter. 4535cee9645SThomas Gleixner */ 4545cee9645SThomas Gleixner struct timespec ns_to_timespec(const s64 nsec) 4555cee9645SThomas Gleixner { 4565cee9645SThomas Gleixner struct timespec ts; 4575cee9645SThomas Gleixner s32 rem; 4585cee9645SThomas Gleixner 4595cee9645SThomas Gleixner if (!nsec) 4605cee9645SThomas Gleixner return (struct timespec) {0, 0}; 4615cee9645SThomas Gleixner 4625cee9645SThomas Gleixner ts.tv_sec = div_s64_rem(nsec, NSEC_PER_SEC, &rem); 4635cee9645SThomas Gleixner if (unlikely(rem < 0)) { 4645cee9645SThomas Gleixner ts.tv_sec--; 4655cee9645SThomas Gleixner rem += NSEC_PER_SEC; 4665cee9645SThomas Gleixner } 4675cee9645SThomas Gleixner ts.tv_nsec = rem; 4685cee9645SThomas Gleixner 4695cee9645SThomas Gleixner return ts; 4705cee9645SThomas Gleixner } 4715cee9645SThomas Gleixner EXPORT_SYMBOL(ns_to_timespec); 4725cee9645SThomas Gleixner 4735cee9645SThomas Gleixner /** 4745cee9645SThomas Gleixner * ns_to_timeval - Convert nanoseconds to timeval 4755cee9645SThomas Gleixner * @nsec: the nanoseconds value to be converted 4765cee9645SThomas Gleixner * 4775cee9645SThomas Gleixner * Returns the timeval representation of the nsec parameter. 4785cee9645SThomas Gleixner */ 4795cee9645SThomas Gleixner struct timeval ns_to_timeval(const s64 nsec) 4805cee9645SThomas Gleixner { 4815cee9645SThomas Gleixner struct timespec ts = ns_to_timespec(nsec); 4825cee9645SThomas Gleixner struct timeval tv; 4835cee9645SThomas Gleixner 4845cee9645SThomas Gleixner tv.tv_sec = ts.tv_sec; 4855cee9645SThomas Gleixner tv.tv_usec = (suseconds_t) ts.tv_nsec / 1000; 4865cee9645SThomas Gleixner 4875cee9645SThomas Gleixner return tv; 4885cee9645SThomas Gleixner } 4895cee9645SThomas Gleixner EXPORT_SYMBOL(ns_to_timeval); 4905cee9645SThomas Gleixner 491a84d1169SArnd Bergmann struct __kernel_old_timeval ns_to_kernel_old_timeval(const s64 nsec) 492a84d1169SArnd Bergmann { 493a84d1169SArnd Bergmann struct timespec64 ts = ns_to_timespec64(nsec); 494a84d1169SArnd Bergmann struct __kernel_old_timeval tv; 495a84d1169SArnd Bergmann 496a84d1169SArnd Bergmann tv.tv_sec = ts.tv_sec; 497a84d1169SArnd Bergmann tv.tv_usec = (suseconds_t)ts.tv_nsec / 1000; 498a84d1169SArnd Bergmann 499a84d1169SArnd Bergmann return tv; 500a84d1169SArnd Bergmann } 501a84d1169SArnd Bergmann EXPORT_SYMBOL(ns_to_kernel_old_timeval); 502a84d1169SArnd Bergmann 50349cd6f86SJohn Stultz /** 50449cd6f86SJohn Stultz * set_normalized_timespec - set timespec sec and nsec parts and normalize 50549cd6f86SJohn Stultz * 50649cd6f86SJohn Stultz * @ts: pointer to timespec variable to be set 50749cd6f86SJohn Stultz * @sec: seconds to set 50849cd6f86SJohn Stultz * @nsec: nanoseconds to set 50949cd6f86SJohn Stultz * 51049cd6f86SJohn Stultz * Set seconds and nanoseconds field of a timespec variable and 51149cd6f86SJohn Stultz * normalize to the timespec storage format 51249cd6f86SJohn Stultz * 51349cd6f86SJohn Stultz * Note: The tv_nsec part is always in the range of 51449cd6f86SJohn Stultz * 0 <= tv_nsec < NSEC_PER_SEC 51549cd6f86SJohn Stultz * For negative values only the tv_sec field is negative ! 51649cd6f86SJohn Stultz */ 51749cd6f86SJohn Stultz void set_normalized_timespec64(struct timespec64 *ts, time64_t sec, s64 nsec) 51849cd6f86SJohn Stultz { 51949cd6f86SJohn Stultz while (nsec >= NSEC_PER_SEC) { 52049cd6f86SJohn Stultz /* 52149cd6f86SJohn Stultz * The following asm() prevents the compiler from 52249cd6f86SJohn Stultz * optimising this loop into a modulo operation. See 52349cd6f86SJohn Stultz * also __iter_div_u64_rem() in include/linux/time.h 52449cd6f86SJohn Stultz */ 52549cd6f86SJohn Stultz asm("" : "+rm"(nsec)); 52649cd6f86SJohn Stultz nsec -= NSEC_PER_SEC; 52749cd6f86SJohn Stultz ++sec; 52849cd6f86SJohn Stultz } 52949cd6f86SJohn Stultz while (nsec < 0) { 53049cd6f86SJohn Stultz asm("" : "+rm"(nsec)); 53149cd6f86SJohn Stultz nsec += NSEC_PER_SEC; 53249cd6f86SJohn Stultz --sec; 53349cd6f86SJohn Stultz } 53449cd6f86SJohn Stultz ts->tv_sec = sec; 53549cd6f86SJohn Stultz ts->tv_nsec = nsec; 53649cd6f86SJohn Stultz } 53749cd6f86SJohn Stultz EXPORT_SYMBOL(set_normalized_timespec64); 53849cd6f86SJohn Stultz 53949cd6f86SJohn Stultz /** 54049cd6f86SJohn Stultz * ns_to_timespec64 - Convert nanoseconds to timespec64 54149cd6f86SJohn Stultz * @nsec: the nanoseconds value to be converted 54249cd6f86SJohn Stultz * 54349cd6f86SJohn Stultz * Returns the timespec64 representation of the nsec parameter. 54449cd6f86SJohn Stultz */ 54549cd6f86SJohn Stultz struct timespec64 ns_to_timespec64(const s64 nsec) 54649cd6f86SJohn Stultz { 54749cd6f86SJohn Stultz struct timespec64 ts; 54849cd6f86SJohn Stultz s32 rem; 54949cd6f86SJohn Stultz 55049cd6f86SJohn Stultz if (!nsec) 55149cd6f86SJohn Stultz return (struct timespec64) {0, 0}; 55249cd6f86SJohn Stultz 55349cd6f86SJohn Stultz ts.tv_sec = div_s64_rem(nsec, NSEC_PER_SEC, &rem); 55449cd6f86SJohn Stultz if (unlikely(rem < 0)) { 55549cd6f86SJohn Stultz ts.tv_sec--; 55649cd6f86SJohn Stultz rem += NSEC_PER_SEC; 55749cd6f86SJohn Stultz } 55849cd6f86SJohn Stultz ts.tv_nsec = rem; 55949cd6f86SJohn Stultz 56049cd6f86SJohn Stultz return ts; 56149cd6f86SJohn Stultz } 56249cd6f86SJohn Stultz EXPORT_SYMBOL(ns_to_timespec64); 563abc8f96eSArnd Bergmann 564ca42aaf0SNicholas Mc Guire /** 565ca42aaf0SNicholas Mc Guire * msecs_to_jiffies: - convert milliseconds to jiffies 566ca42aaf0SNicholas Mc Guire * @m: time in milliseconds 567ca42aaf0SNicholas Mc Guire * 568ca42aaf0SNicholas Mc Guire * conversion is done as follows: 5695cee9645SThomas Gleixner * 5705cee9645SThomas Gleixner * - negative values mean 'infinite timeout' (MAX_JIFFY_OFFSET) 5715cee9645SThomas Gleixner * 5725cee9645SThomas Gleixner * - 'too large' values [that would result in larger than 5735cee9645SThomas Gleixner * MAX_JIFFY_OFFSET values] mean 'infinite timeout' too. 5745cee9645SThomas Gleixner * 5755cee9645SThomas Gleixner * - all other values are converted to jiffies by either multiplying 576ca42aaf0SNicholas Mc Guire * the input value by a factor or dividing it with a factor and 577ca42aaf0SNicholas Mc Guire * handling any 32-bit overflows. 578ca42aaf0SNicholas Mc Guire * for the details see __msecs_to_jiffies() 5795cee9645SThomas Gleixner * 580ca42aaf0SNicholas Mc Guire * msecs_to_jiffies() checks for the passed in value being a constant 581ca42aaf0SNicholas Mc Guire * via __builtin_constant_p() allowing gcc to eliminate most of the 582ca42aaf0SNicholas Mc Guire * code, __msecs_to_jiffies() is called if the value passed does not 583ca42aaf0SNicholas Mc Guire * allow constant folding and the actual conversion must be done at 584ca42aaf0SNicholas Mc Guire * runtime. 585ca42aaf0SNicholas Mc Guire * the _msecs_to_jiffies helpers are the HZ dependent conversion 586ca42aaf0SNicholas Mc Guire * routines found in include/linux/jiffies.h 5875cee9645SThomas Gleixner */ 588ca42aaf0SNicholas Mc Guire unsigned long __msecs_to_jiffies(const unsigned int m) 5895cee9645SThomas Gleixner { 5905cee9645SThomas Gleixner /* 5915cee9645SThomas Gleixner * Negative value, means infinite timeout: 5925cee9645SThomas Gleixner */ 5935cee9645SThomas Gleixner if ((int)m < 0) 5945cee9645SThomas Gleixner return MAX_JIFFY_OFFSET; 595ca42aaf0SNicholas Mc Guire return _msecs_to_jiffies(m); 5965cee9645SThomas Gleixner } 597ca42aaf0SNicholas Mc Guire EXPORT_SYMBOL(__msecs_to_jiffies); 5985cee9645SThomas Gleixner 599ae60d6a0SNicholas Mc Guire unsigned long __usecs_to_jiffies(const unsigned int u) 6005cee9645SThomas Gleixner { 6015cee9645SThomas Gleixner if (u > jiffies_to_usecs(MAX_JIFFY_OFFSET)) 6025cee9645SThomas Gleixner return MAX_JIFFY_OFFSET; 603ae60d6a0SNicholas Mc Guire return _usecs_to_jiffies(u); 6045cee9645SThomas Gleixner } 605ae60d6a0SNicholas Mc Guire EXPORT_SYMBOL(__usecs_to_jiffies); 6065cee9645SThomas Gleixner 6075cee9645SThomas Gleixner /* 6085cee9645SThomas Gleixner * The TICK_NSEC - 1 rounds up the value to the next resolution. Note 6095cee9645SThomas Gleixner * that a remainder subtract here would not do the right thing as the 6105cee9645SThomas Gleixner * resolution values don't fall on second boundries. I.e. the line: 6115cee9645SThomas Gleixner * nsec -= nsec % TICK_NSEC; is NOT a correct resolution rounding. 612d78c9300SAndrew Hunter * Note that due to the small error in the multiplier here, this 613d78c9300SAndrew Hunter * rounding is incorrect for sufficiently large values of tv_nsec, but 614d78c9300SAndrew Hunter * well formed timespecs should have tv_nsec < NSEC_PER_SEC, so we're 615d78c9300SAndrew Hunter * OK. 6165cee9645SThomas Gleixner * 6175cee9645SThomas Gleixner * Rather, we just shift the bits off the right. 6185cee9645SThomas Gleixner * 6195cee9645SThomas Gleixner * The >> (NSEC_JIFFIE_SC - SEC_JIFFIE_SC) converts the scaled nsec 6205cee9645SThomas Gleixner * value to a scaled second value. 6215cee9645SThomas Gleixner */ 622d78c9300SAndrew Hunter static unsigned long 6239ca30850SBaolin Wang __timespec64_to_jiffies(u64 sec, long nsec) 6245cee9645SThomas Gleixner { 625d78c9300SAndrew Hunter nsec = nsec + TICK_NSEC - 1; 6265cee9645SThomas Gleixner 6275cee9645SThomas Gleixner if (sec >= MAX_SEC_IN_JIFFIES){ 6285cee9645SThomas Gleixner sec = MAX_SEC_IN_JIFFIES; 6295cee9645SThomas Gleixner nsec = 0; 6305cee9645SThomas Gleixner } 6319ca30850SBaolin Wang return ((sec * SEC_CONVERSION) + 6325cee9645SThomas Gleixner (((u64)nsec * NSEC_CONVERSION) >> 6335cee9645SThomas Gleixner (NSEC_JIFFIE_SC - SEC_JIFFIE_SC))) >> SEC_JIFFIE_SC; 6345cee9645SThomas Gleixner 6355cee9645SThomas Gleixner } 636d78c9300SAndrew Hunter 6379ca30850SBaolin Wang static unsigned long 6389ca30850SBaolin Wang __timespec_to_jiffies(unsigned long sec, long nsec) 639d78c9300SAndrew Hunter { 6409ca30850SBaolin Wang return __timespec64_to_jiffies((u64)sec, nsec); 641d78c9300SAndrew Hunter } 642d78c9300SAndrew Hunter 6439ca30850SBaolin Wang unsigned long 6449ca30850SBaolin Wang timespec64_to_jiffies(const struct timespec64 *value) 6459ca30850SBaolin Wang { 6469ca30850SBaolin Wang return __timespec64_to_jiffies(value->tv_sec, value->tv_nsec); 6479ca30850SBaolin Wang } 6489ca30850SBaolin Wang EXPORT_SYMBOL(timespec64_to_jiffies); 6495cee9645SThomas Gleixner 6505cee9645SThomas Gleixner void 6519ca30850SBaolin Wang jiffies_to_timespec64(const unsigned long jiffies, struct timespec64 *value) 6525cee9645SThomas Gleixner { 6535cee9645SThomas Gleixner /* 6545cee9645SThomas Gleixner * Convert jiffies to nanoseconds and separate with 6555cee9645SThomas Gleixner * one divide. 6565cee9645SThomas Gleixner */ 6575cee9645SThomas Gleixner u32 rem; 6585cee9645SThomas Gleixner value->tv_sec = div_u64_rem((u64)jiffies * TICK_NSEC, 6595cee9645SThomas Gleixner NSEC_PER_SEC, &rem); 6605cee9645SThomas Gleixner value->tv_nsec = rem; 6615cee9645SThomas Gleixner } 6629ca30850SBaolin Wang EXPORT_SYMBOL(jiffies_to_timespec64); 6635cee9645SThomas Gleixner 664d78c9300SAndrew Hunter /* 665d78c9300SAndrew Hunter * We could use a similar algorithm to timespec_to_jiffies (with a 666d78c9300SAndrew Hunter * different multiplier for usec instead of nsec). But this has a 667d78c9300SAndrew Hunter * problem with rounding: we can't exactly add TICK_NSEC - 1 to the 668d78c9300SAndrew Hunter * usec value, since it's not necessarily integral. 6695cee9645SThomas Gleixner * 670d78c9300SAndrew Hunter * We could instead round in the intermediate scaled representation 671d78c9300SAndrew Hunter * (i.e. in units of 1/2^(large scale) jiffies) but that's also 672d78c9300SAndrew Hunter * perilous: the scaling introduces a small positive error, which 673d78c9300SAndrew Hunter * combined with a division-rounding-upward (i.e. adding 2^(scale) - 1 674d78c9300SAndrew Hunter * units to the intermediate before shifting) leads to accidental 675d78c9300SAndrew Hunter * overflow and overestimates. 676d78c9300SAndrew Hunter * 677d78c9300SAndrew Hunter * At the cost of one additional multiplication by a constant, just 678d78c9300SAndrew Hunter * use the timespec implementation. 6795cee9645SThomas Gleixner */ 6805cee9645SThomas Gleixner unsigned long 6815cee9645SThomas Gleixner timeval_to_jiffies(const struct timeval *value) 6825cee9645SThomas Gleixner { 683d78c9300SAndrew Hunter return __timespec_to_jiffies(value->tv_sec, 684d78c9300SAndrew Hunter value->tv_usec * NSEC_PER_USEC); 6855cee9645SThomas Gleixner } 6865cee9645SThomas Gleixner EXPORT_SYMBOL(timeval_to_jiffies); 6875cee9645SThomas Gleixner 6885cee9645SThomas Gleixner void jiffies_to_timeval(const unsigned long jiffies, struct timeval *value) 6895cee9645SThomas Gleixner { 6905cee9645SThomas Gleixner /* 6915cee9645SThomas Gleixner * Convert jiffies to nanoseconds and separate with 6925cee9645SThomas Gleixner * one divide. 6935cee9645SThomas Gleixner */ 6945cee9645SThomas Gleixner u32 rem; 6955cee9645SThomas Gleixner 6965cee9645SThomas Gleixner value->tv_sec = div_u64_rem((u64)jiffies * TICK_NSEC, 6975cee9645SThomas Gleixner NSEC_PER_SEC, &rem); 6985cee9645SThomas Gleixner value->tv_usec = rem / NSEC_PER_USEC; 6995cee9645SThomas Gleixner } 7005cee9645SThomas Gleixner EXPORT_SYMBOL(jiffies_to_timeval); 7015cee9645SThomas Gleixner 7025cee9645SThomas Gleixner /* 7035cee9645SThomas Gleixner * Convert jiffies/jiffies_64 to clock_t and back. 7045cee9645SThomas Gleixner */ 7055cee9645SThomas Gleixner clock_t jiffies_to_clock_t(unsigned long x) 7065cee9645SThomas Gleixner { 7075cee9645SThomas Gleixner #if (TICK_NSEC % (NSEC_PER_SEC / USER_HZ)) == 0 7085cee9645SThomas Gleixner # if HZ < USER_HZ 7095cee9645SThomas Gleixner return x * (USER_HZ / HZ); 7105cee9645SThomas Gleixner # else 7115cee9645SThomas Gleixner return x / (HZ / USER_HZ); 7125cee9645SThomas Gleixner # endif 7135cee9645SThomas Gleixner #else 7145cee9645SThomas Gleixner return div_u64((u64)x * TICK_NSEC, NSEC_PER_SEC / USER_HZ); 7155cee9645SThomas Gleixner #endif 7165cee9645SThomas Gleixner } 7175cee9645SThomas Gleixner EXPORT_SYMBOL(jiffies_to_clock_t); 7185cee9645SThomas Gleixner 7195cee9645SThomas Gleixner unsigned long clock_t_to_jiffies(unsigned long x) 7205cee9645SThomas Gleixner { 7215cee9645SThomas Gleixner #if (HZ % USER_HZ)==0 7225cee9645SThomas Gleixner if (x >= ~0UL / (HZ / USER_HZ)) 7235cee9645SThomas Gleixner return ~0UL; 7245cee9645SThomas Gleixner return x * (HZ / USER_HZ); 7255cee9645SThomas Gleixner #else 7265cee9645SThomas Gleixner /* Don't worry about loss of precision here .. */ 7275cee9645SThomas Gleixner if (x >= ~0UL / HZ * USER_HZ) 7285cee9645SThomas Gleixner return ~0UL; 7295cee9645SThomas Gleixner 7305cee9645SThomas Gleixner /* .. but do try to contain it here */ 7315cee9645SThomas Gleixner return div_u64((u64)x * HZ, USER_HZ); 7325cee9645SThomas Gleixner #endif 7335cee9645SThomas Gleixner } 7345cee9645SThomas Gleixner EXPORT_SYMBOL(clock_t_to_jiffies); 7355cee9645SThomas Gleixner 7365cee9645SThomas Gleixner u64 jiffies_64_to_clock_t(u64 x) 7375cee9645SThomas Gleixner { 7385cee9645SThomas Gleixner #if (TICK_NSEC % (NSEC_PER_SEC / USER_HZ)) == 0 7395cee9645SThomas Gleixner # if HZ < USER_HZ 7405cee9645SThomas Gleixner x = div_u64(x * USER_HZ, HZ); 7415cee9645SThomas Gleixner # elif HZ > USER_HZ 7425cee9645SThomas Gleixner x = div_u64(x, HZ / USER_HZ); 7435cee9645SThomas Gleixner # else 7445cee9645SThomas Gleixner /* Nothing to do */ 7455cee9645SThomas Gleixner # endif 7465cee9645SThomas Gleixner #else 7475cee9645SThomas Gleixner /* 7485cee9645SThomas Gleixner * There are better ways that don't overflow early, 7495cee9645SThomas Gleixner * but even this doesn't overflow in hundreds of years 7505cee9645SThomas Gleixner * in 64 bits, so.. 7515cee9645SThomas Gleixner */ 7525cee9645SThomas Gleixner x = div_u64(x * TICK_NSEC, (NSEC_PER_SEC / USER_HZ)); 7535cee9645SThomas Gleixner #endif 7545cee9645SThomas Gleixner return x; 7555cee9645SThomas Gleixner } 7565cee9645SThomas Gleixner EXPORT_SYMBOL(jiffies_64_to_clock_t); 7575cee9645SThomas Gleixner 7585cee9645SThomas Gleixner u64 nsec_to_clock_t(u64 x) 7595cee9645SThomas Gleixner { 7605cee9645SThomas Gleixner #if (NSEC_PER_SEC % USER_HZ) == 0 7615cee9645SThomas Gleixner return div_u64(x, NSEC_PER_SEC / USER_HZ); 7625cee9645SThomas Gleixner #elif (USER_HZ % 512) == 0 7635cee9645SThomas Gleixner return div_u64(x * USER_HZ / 512, NSEC_PER_SEC / 512); 7645cee9645SThomas Gleixner #else 7655cee9645SThomas Gleixner /* 7665cee9645SThomas Gleixner * max relative error 5.7e-8 (1.8s per year) for USER_HZ <= 1024, 7675cee9645SThomas Gleixner * overflow after 64.99 years. 7685cee9645SThomas Gleixner * exact for HZ=60, 72, 90, 120, 144, 180, 300, 600, 900, ... 7695cee9645SThomas Gleixner */ 7705cee9645SThomas Gleixner return div_u64(x * 9, (9ull * NSEC_PER_SEC + (USER_HZ / 2)) / USER_HZ); 7715cee9645SThomas Gleixner #endif 7725cee9645SThomas Gleixner } 7735cee9645SThomas Gleixner 77407e5f5e3SFrederic Weisbecker u64 jiffies64_to_nsecs(u64 j) 77507e5f5e3SFrederic Weisbecker { 77607e5f5e3SFrederic Weisbecker #if !(NSEC_PER_SEC % HZ) 77707e5f5e3SFrederic Weisbecker return (NSEC_PER_SEC / HZ) * j; 77807e5f5e3SFrederic Weisbecker # else 77907e5f5e3SFrederic Weisbecker return div_u64(j * HZ_TO_NSEC_NUM, HZ_TO_NSEC_DEN); 78007e5f5e3SFrederic Weisbecker #endif 78107e5f5e3SFrederic Weisbecker } 78207e5f5e3SFrederic Weisbecker EXPORT_SYMBOL(jiffies64_to_nsecs); 78307e5f5e3SFrederic Weisbecker 7845cee9645SThomas Gleixner /** 7855cee9645SThomas Gleixner * nsecs_to_jiffies64 - Convert nsecs in u64 to jiffies64 7865cee9645SThomas Gleixner * 7875cee9645SThomas Gleixner * @n: nsecs in u64 7885cee9645SThomas Gleixner * 7895cee9645SThomas Gleixner * Unlike {m,u}secs_to_jiffies, type of input is not unsigned int but u64. 7905cee9645SThomas Gleixner * And this doesn't return MAX_JIFFY_OFFSET since this function is designed 7915cee9645SThomas Gleixner * for scheduler, not for use in device drivers to calculate timeout value. 7925cee9645SThomas Gleixner * 7935cee9645SThomas Gleixner * note: 7945cee9645SThomas Gleixner * NSEC_PER_SEC = 10^9 = (5^9 * 2^9) = (1953125 * 512) 7955cee9645SThomas Gleixner * ULLONG_MAX ns = 18446744073.709551615 secs = about 584 years 7965cee9645SThomas Gleixner */ 7975cee9645SThomas Gleixner u64 nsecs_to_jiffies64(u64 n) 7985cee9645SThomas Gleixner { 7995cee9645SThomas Gleixner #if (NSEC_PER_SEC % HZ) == 0 8005cee9645SThomas Gleixner /* Common case, HZ = 100, 128, 200, 250, 256, 500, 512, 1000 etc. */ 8015cee9645SThomas Gleixner return div_u64(n, NSEC_PER_SEC / HZ); 8025cee9645SThomas Gleixner #elif (HZ % 512) == 0 8035cee9645SThomas Gleixner /* overflow after 292 years if HZ = 1024 */ 8045cee9645SThomas Gleixner return div_u64(n * HZ / 512, NSEC_PER_SEC / 512); 8055cee9645SThomas Gleixner #else 8065cee9645SThomas Gleixner /* 8075cee9645SThomas Gleixner * Generic case - optimized for cases where HZ is a multiple of 3. 8085cee9645SThomas Gleixner * overflow after 64.99 years, exact for HZ = 60, 72, 90, 120 etc. 8095cee9645SThomas Gleixner */ 8105cee9645SThomas Gleixner return div_u64(n * 9, (9ull * NSEC_PER_SEC + HZ / 2) / HZ); 8115cee9645SThomas Gleixner #endif 8125cee9645SThomas Gleixner } 8137bd0e226SDaniel Vetter EXPORT_SYMBOL(nsecs_to_jiffies64); 8145cee9645SThomas Gleixner 8155cee9645SThomas Gleixner /** 8165cee9645SThomas Gleixner * nsecs_to_jiffies - Convert nsecs in u64 to jiffies 8175cee9645SThomas Gleixner * 8185cee9645SThomas Gleixner * @n: nsecs in u64 8195cee9645SThomas Gleixner * 8205cee9645SThomas Gleixner * Unlike {m,u}secs_to_jiffies, type of input is not unsigned int but u64. 8215cee9645SThomas Gleixner * And this doesn't return MAX_JIFFY_OFFSET since this function is designed 8225cee9645SThomas Gleixner * for scheduler, not for use in device drivers to calculate timeout value. 8235cee9645SThomas Gleixner * 8245cee9645SThomas Gleixner * note: 8255cee9645SThomas Gleixner * NSEC_PER_SEC = 10^9 = (5^9 * 2^9) = (1953125 * 512) 8265cee9645SThomas Gleixner * ULLONG_MAX ns = 18446744073.709551615 secs = about 584 years 8275cee9645SThomas Gleixner */ 8285cee9645SThomas Gleixner unsigned long nsecs_to_jiffies(u64 n) 8295cee9645SThomas Gleixner { 8305cee9645SThomas Gleixner return (unsigned long)nsecs_to_jiffies64(n); 8315cee9645SThomas Gleixner } 832d560fed6SThomas Gleixner EXPORT_SYMBOL_GPL(nsecs_to_jiffies); 8335cee9645SThomas Gleixner 8345cee9645SThomas Gleixner /* 835bc2c53e5SDeepa Dinamani * Add two timespec64 values and do a safety check for overflow. 836bc2c53e5SDeepa Dinamani * It's assumed that both values are valid (>= 0). 837bc2c53e5SDeepa Dinamani * And, each timespec64 is in normalized form. 838bc2c53e5SDeepa Dinamani */ 839bc2c53e5SDeepa Dinamani struct timespec64 timespec64_add_safe(const struct timespec64 lhs, 840bc2c53e5SDeepa Dinamani const struct timespec64 rhs) 841bc2c53e5SDeepa Dinamani { 842bc2c53e5SDeepa Dinamani struct timespec64 res; 843bc2c53e5SDeepa Dinamani 844469e857fSVegard Nossum set_normalized_timespec64(&res, (timeu64_t) lhs.tv_sec + rhs.tv_sec, 845bc2c53e5SDeepa Dinamani lhs.tv_nsec + rhs.tv_nsec); 846bc2c53e5SDeepa Dinamani 847bc2c53e5SDeepa Dinamani if (unlikely(res.tv_sec < lhs.tv_sec || res.tv_sec < rhs.tv_sec)) { 848bc2c53e5SDeepa Dinamani res.tv_sec = TIME64_MAX; 849bc2c53e5SDeepa Dinamani res.tv_nsec = 0; 850bc2c53e5SDeepa Dinamani } 851bc2c53e5SDeepa Dinamani 852bc2c53e5SDeepa Dinamani return res; 853bc2c53e5SDeepa Dinamani } 854f59dd9c8SDeepa Dinamani 855f59dd9c8SDeepa Dinamani int get_timespec64(struct timespec64 *ts, 856ea2ce8f3SDeepa Dinamani const struct __kernel_timespec __user *uts) 857f59dd9c8SDeepa Dinamani { 858ea2ce8f3SDeepa Dinamani struct __kernel_timespec kts; 859f59dd9c8SDeepa Dinamani int ret; 860f59dd9c8SDeepa Dinamani 861f59dd9c8SDeepa Dinamani ret = copy_from_user(&kts, uts, sizeof(kts)); 862f59dd9c8SDeepa Dinamani if (ret) 863f59dd9c8SDeepa Dinamani return -EFAULT; 864f59dd9c8SDeepa Dinamani 865f59dd9c8SDeepa Dinamani ts->tv_sec = kts.tv_sec; 866ea2ce8f3SDeepa Dinamani 867ea2ce8f3SDeepa Dinamani /* Zero out the padding for 32 bit systems or in compat mode */ 86898f76206SDmitry Safonov if (IS_ENABLED(CONFIG_64BIT_TIME) && in_compat_syscall()) 869ea2ce8f3SDeepa Dinamani kts.tv_nsec &= 0xFFFFFFFFUL; 870ea2ce8f3SDeepa Dinamani 871f59dd9c8SDeepa Dinamani ts->tv_nsec = kts.tv_nsec; 872f59dd9c8SDeepa Dinamani 873f59dd9c8SDeepa Dinamani return 0; 874f59dd9c8SDeepa Dinamani } 875f59dd9c8SDeepa Dinamani EXPORT_SYMBOL_GPL(get_timespec64); 876f59dd9c8SDeepa Dinamani 877f59dd9c8SDeepa Dinamani int put_timespec64(const struct timespec64 *ts, 878ea2ce8f3SDeepa Dinamani struct __kernel_timespec __user *uts) 879f59dd9c8SDeepa Dinamani { 880ea2ce8f3SDeepa Dinamani struct __kernel_timespec kts = { 881f59dd9c8SDeepa Dinamani .tv_sec = ts->tv_sec, 882f59dd9c8SDeepa Dinamani .tv_nsec = ts->tv_nsec 883f59dd9c8SDeepa Dinamani }; 884ea2ce8f3SDeepa Dinamani 885f59dd9c8SDeepa Dinamani return copy_to_user(uts, &kts, sizeof(kts)) ? -EFAULT : 0; 886f59dd9c8SDeepa Dinamani } 887f59dd9c8SDeepa Dinamani EXPORT_SYMBOL_GPL(put_timespec64); 888d5b7ffbfSDeepa Dinamani 889743f5cdbSkbuild test robot static int __get_old_timespec32(struct timespec64 *ts64, 8909afc5eeeSArnd Bergmann const struct old_timespec32 __user *cts) 8911c68adf6SDeepa Dinamani { 8929afc5eeeSArnd Bergmann struct old_timespec32 ts; 8931c68adf6SDeepa Dinamani int ret; 8941c68adf6SDeepa Dinamani 8951c68adf6SDeepa Dinamani ret = copy_from_user(&ts, cts, sizeof(ts)); 8961c68adf6SDeepa Dinamani if (ret) 8971c68adf6SDeepa Dinamani return -EFAULT; 8981c68adf6SDeepa Dinamani 8991c68adf6SDeepa Dinamani ts64->tv_sec = ts.tv_sec; 9001c68adf6SDeepa Dinamani ts64->tv_nsec = ts.tv_nsec; 9011c68adf6SDeepa Dinamani 9021c68adf6SDeepa Dinamani return 0; 9031c68adf6SDeepa Dinamani } 9041c68adf6SDeepa Dinamani 905743f5cdbSkbuild test robot static int __put_old_timespec32(const struct timespec64 *ts64, 9069afc5eeeSArnd Bergmann struct old_timespec32 __user *cts) 9071c68adf6SDeepa Dinamani { 9089afc5eeeSArnd Bergmann struct old_timespec32 ts = { 9091c68adf6SDeepa Dinamani .tv_sec = ts64->tv_sec, 9101c68adf6SDeepa Dinamani .tv_nsec = ts64->tv_nsec 9111c68adf6SDeepa Dinamani }; 9121c68adf6SDeepa Dinamani return copy_to_user(cts, &ts, sizeof(ts)) ? -EFAULT : 0; 9131c68adf6SDeepa Dinamani } 9141c68adf6SDeepa Dinamani 9159afc5eeeSArnd Bergmann int get_old_timespec32(struct timespec64 *ts, const void __user *uts) 9161c68adf6SDeepa Dinamani { 9171c68adf6SDeepa Dinamani if (COMPAT_USE_64BIT_TIME) 9181c68adf6SDeepa Dinamani return copy_from_user(ts, uts, sizeof(*ts)) ? -EFAULT : 0; 9191c68adf6SDeepa Dinamani else 9209afc5eeeSArnd Bergmann return __get_old_timespec32(ts, uts); 9211c68adf6SDeepa Dinamani } 9229afc5eeeSArnd Bergmann EXPORT_SYMBOL_GPL(get_old_timespec32); 9231c68adf6SDeepa Dinamani 9249afc5eeeSArnd Bergmann int put_old_timespec32(const struct timespec64 *ts, void __user *uts) 9251c68adf6SDeepa Dinamani { 9261c68adf6SDeepa Dinamani if (COMPAT_USE_64BIT_TIME) 9271c68adf6SDeepa Dinamani return copy_to_user(uts, ts, sizeof(*ts)) ? -EFAULT : 0; 9281c68adf6SDeepa Dinamani else 9299afc5eeeSArnd Bergmann return __put_old_timespec32(ts, uts); 9301c68adf6SDeepa Dinamani } 9319afc5eeeSArnd Bergmann EXPORT_SYMBOL_GPL(put_old_timespec32); 9321c68adf6SDeepa Dinamani 933d5b7ffbfSDeepa Dinamani int get_itimerspec64(struct itimerspec64 *it, 934d0dd63a8SDeepa Dinamani const struct __kernel_itimerspec __user *uit) 935d5b7ffbfSDeepa Dinamani { 936d5b7ffbfSDeepa Dinamani int ret; 937d5b7ffbfSDeepa Dinamani 938d5b7ffbfSDeepa Dinamani ret = get_timespec64(&it->it_interval, &uit->it_interval); 939d5b7ffbfSDeepa Dinamani if (ret) 940d5b7ffbfSDeepa Dinamani return ret; 941d5b7ffbfSDeepa Dinamani 942d5b7ffbfSDeepa Dinamani ret = get_timespec64(&it->it_value, &uit->it_value); 943d5b7ffbfSDeepa Dinamani 944d5b7ffbfSDeepa Dinamani return ret; 945d5b7ffbfSDeepa Dinamani } 946d5b7ffbfSDeepa Dinamani EXPORT_SYMBOL_GPL(get_itimerspec64); 947d5b7ffbfSDeepa Dinamani 948d5b7ffbfSDeepa Dinamani int put_itimerspec64(const struct itimerspec64 *it, 949d0dd63a8SDeepa Dinamani struct __kernel_itimerspec __user *uit) 950d5b7ffbfSDeepa Dinamani { 951d5b7ffbfSDeepa Dinamani int ret; 952d5b7ffbfSDeepa Dinamani 953d5b7ffbfSDeepa Dinamani ret = put_timespec64(&it->it_interval, &uit->it_interval); 954d5b7ffbfSDeepa Dinamani if (ret) 955d5b7ffbfSDeepa Dinamani return ret; 956d5b7ffbfSDeepa Dinamani 957d5b7ffbfSDeepa Dinamani ret = put_timespec64(&it->it_value, &uit->it_value); 958d5b7ffbfSDeepa Dinamani 959d5b7ffbfSDeepa Dinamani return ret; 960d5b7ffbfSDeepa Dinamani } 961d5b7ffbfSDeepa Dinamani EXPORT_SYMBOL_GPL(put_itimerspec64); 962afef05cfSDeepa Dinamani 9639afc5eeeSArnd Bergmann int get_old_itimerspec32(struct itimerspec64 *its, 9649afc5eeeSArnd Bergmann const struct old_itimerspec32 __user *uits) 965afef05cfSDeepa Dinamani { 966afef05cfSDeepa Dinamani 9679afc5eeeSArnd Bergmann if (__get_old_timespec32(&its->it_interval, &uits->it_interval) || 9689afc5eeeSArnd Bergmann __get_old_timespec32(&its->it_value, &uits->it_value)) 969afef05cfSDeepa Dinamani return -EFAULT; 970afef05cfSDeepa Dinamani return 0; 971afef05cfSDeepa Dinamani } 9729afc5eeeSArnd Bergmann EXPORT_SYMBOL_GPL(get_old_itimerspec32); 973afef05cfSDeepa Dinamani 9749afc5eeeSArnd Bergmann int put_old_itimerspec32(const struct itimerspec64 *its, 9759afc5eeeSArnd Bergmann struct old_itimerspec32 __user *uits) 976afef05cfSDeepa Dinamani { 9779afc5eeeSArnd Bergmann if (__put_old_timespec32(&its->it_interval, &uits->it_interval) || 9789afc5eeeSArnd Bergmann __put_old_timespec32(&its->it_value, &uits->it_value)) 979afef05cfSDeepa Dinamani return -EFAULT; 980afef05cfSDeepa Dinamani return 0; 981afef05cfSDeepa Dinamani } 9829afc5eeeSArnd Bergmann EXPORT_SYMBOL_GPL(put_old_itimerspec32); 983