TimeDateTimeWithTimeZone

Struct TimeDateTimeWithTimeZone 

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pub struct TimeDateTimeWithTimeZone { /* private fields */ }
Expand description

Implementations§

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impl OffsetDateTime

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pub const UNIX_EPOCH: OffsetDateTime

Midnight, 1 January, 1970 (UTC).

assert_eq!(OffsetDateTime::UNIX_EPOCH, datetime!(1970-01-01 0:00 UTC));
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pub fn now_utc() -> OffsetDateTime

Create a new OffsetDateTime with the current date and time in UTC.

assert!(OffsetDateTime::now_utc().year() >= 2019);
assert_eq!(OffsetDateTime::now_utc().offset(), offset!(UTC));
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pub const fn new_in_offset( date: Date, time: Time, offset: UtcOffset, ) -> OffsetDateTime

Create a new OffsetDateTime with the given Date, Time, and UtcOffset.

let dt = OffsetDateTime::new_in_offset(
    Date::from_calendar_date(2024, Month::January, 1)?,
    Time::from_hms_nano(12, 59, 59, 500_000_000)?,
    UtcOffset::from_hms(-5, 0, 0)?,
);
assert_eq!(dt, datetime!(2024-01-01 12:59:59.5 -5));
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pub const fn new_utc(date: Date, time: Time) -> OffsetDateTime

Create a new OffsetDateTime with the given Date and Time in the UTC timezone.

let dt = OffsetDateTime::new_utc(
    Date::from_calendar_date(2024, Month::January, 1)?,
    Time::from_hms_nano(12, 59, 59, 500_000_000)?,
);
assert_eq!(dt, datetime!(2024-01-01 12:59:59.5 UTC));
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pub const fn to_offset(self, offset: UtcOffset) -> OffsetDateTime

Convert the OffsetDateTime from the current UtcOffset to the provided UtcOffset.

assert_eq!(
    datetime!(2000-01-01 0:00 UTC)
        .to_offset(offset!(-1))
        .year(),
    1999,
);

// Let's see what time Sydney's new year's celebration is in New York and Los Angeles.

// Construct midnight on new year's in Sydney.
let sydney = datetime!(2000-01-01 0:00 +11);
let new_york = sydney.to_offset(offset!(-5));
let los_angeles = sydney.to_offset(offset!(-8));
assert_eq!(sydney.hour(), 0);
assert_eq!(new_york.hour(), 8);
assert_eq!(los_angeles.hour(), 5);
§Panics

This method panics if the local date-time in the new offset is outside the supported range.

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pub const fn checked_to_offset( self, offset: UtcOffset, ) -> Option<OffsetDateTime>

Convert the OffsetDateTime from the current UtcOffset to the provided UtcOffset, returning None if the date-time in the resulting offset is invalid.

assert_eq!(
    datetime!(2000-01-01 0:00 UTC)
        .checked_to_offset(offset!(-1))
        .unwrap()
        .year(),
    1999,
);
assert_eq!(
    PrimitiveDateTime::MAX
        .assume_utc()
        .checked_to_offset(offset!(+1)),
    None,
);
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pub const fn to_utc(self) -> UtcDateTime

Convert the OffsetDateTime from the current UtcOffset to UTC, returning a UtcDateTime.

assert_eq!(
    datetime!(2000-01-01 0:00 +1)
        .to_utc()
        .year(),
    1999,
);
§Panics

This method panics if the UTC date-time is outside the supported range.

Source

pub const fn checked_to_utc(self) -> Option<UtcDateTime>

Convert the OffsetDateTime from the current UtcOffset to UTC, returning None if the UTC date-time is invalid. Returns a UtcDateTime.

assert_eq!(
    datetime!(2000-01-01 0:00 +1)
        .checked_to_utc()
        .unwrap()
        .year(),
    1999,
);
assert_eq!(
    datetime!(9999-12-31 23:59:59 -1).checked_to_utc(),
    None,
);
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pub const fn from_unix_timestamp( timestamp: i64, ) -> Result<OffsetDateTime, ComponentRange>

Create an OffsetDateTime from the provided Unix timestamp. Calling .offset() on the resulting value is guaranteed to return UTC.

assert_eq!(
    OffsetDateTime::from_unix_timestamp(0),
    Ok(OffsetDateTime::UNIX_EPOCH),
);
assert_eq!(
    OffsetDateTime::from_unix_timestamp(1_546_300_800),
    Ok(datetime!(2019-01-01 0:00 UTC)),
);

If you have a timestamp-nanosecond pair, you can use something along the lines of the following:

let (timestamp, nanos) = (1, 500_000_000);
assert_eq!(
    OffsetDateTime::from_unix_timestamp(timestamp)? + Duration::nanoseconds(nanos),
    OffsetDateTime::UNIX_EPOCH + 1.5.seconds()
);
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pub const fn from_unix_timestamp_nanos( timestamp: i128, ) -> Result<OffsetDateTime, ComponentRange>

Construct an OffsetDateTime from the provided Unix timestamp (in nanoseconds). Calling .offset() on the resulting value is guaranteed to return UTC.

assert_eq!(
    OffsetDateTime::from_unix_timestamp_nanos(0),
    Ok(OffsetDateTime::UNIX_EPOCH),
);
assert_eq!(
    OffsetDateTime::from_unix_timestamp_nanos(1_546_300_800_000_000_000),
    Ok(datetime!(2019-01-01 0:00 UTC)),
);
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pub const fn offset(self) -> UtcOffset

Get the UtcOffset.

assert_eq!(datetime!(2019-01-01 0:00 UTC).offset(), offset!(UTC));
assert_eq!(datetime!(2019-01-01 0:00 +1).offset(), offset!(+1));
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pub const fn unix_timestamp(self) -> i64

Get the Unix timestamp.

assert_eq!(datetime!(1970-01-01 0:00 UTC).unix_timestamp(), 0);
assert_eq!(datetime!(1970-01-01 0:00 -1).unix_timestamp(), 3_600);
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pub const fn unix_timestamp_nanos(self) -> i128

Get the Unix timestamp in nanoseconds.

use time_macros::datetime;
assert_eq!(datetime!(1970-01-01 0:00 UTC).unix_timestamp_nanos(), 0);
assert_eq!(
    datetime!(1970-01-01 0:00 -1).unix_timestamp_nanos(),
    3_600_000_000_000,
);
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pub const fn date(self) -> Date

Get the Date in the stored offset.

assert_eq!(datetime!(2019-01-01 0:00 UTC).date(), date!(2019-01-01));
assert_eq!(
    datetime!(2019-01-01 0:00 UTC)
        .to_offset(offset!(-1))
        .date(),
    date!(2018-12-31),
);
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pub const fn time(self) -> Time

Get the Time in the stored offset.

assert_eq!(datetime!(2019-01-01 0:00 UTC).time(), time!(0:00));
assert_eq!(
    datetime!(2019-01-01 0:00 UTC)
        .to_offset(offset!(-1))
        .time(),
    time!(23:00)
);
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pub const fn year(self) -> i32

Get the year of the date in the stored offset.

assert_eq!(datetime!(2019-01-01 0:00 UTC).year(), 2019);
assert_eq!(
    datetime!(2019-12-31 23:00 UTC)
        .to_offset(offset!(+1))
        .year(),
    2020,
);
assert_eq!(datetime!(2020-01-01 0:00 UTC).year(), 2020);
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pub const fn month(self) -> Month

Get the month of the date in the stored offset.

assert_eq!(datetime!(2019-01-01 0:00 UTC).month(), Month::January);
assert_eq!(
    datetime!(2019-12-31 23:00 UTC)
        .to_offset(offset!(+1))
        .month(),
    Month::January,
);
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pub const fn day(self) -> u8

Get the day of the date in the stored offset.

The returned value will always be in the range 1..=31.

assert_eq!(datetime!(2019-01-01 0:00 UTC).day(), 1);
assert_eq!(
    datetime!(2019-12-31 23:00 UTC)
        .to_offset(offset!(+1))
        .day(),
    1,
);
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pub const fn ordinal(self) -> u16

Get the day of the year of the date in the stored offset.

The returned value will always be in the range 1..=366.

assert_eq!(datetime!(2019-01-01 0:00 UTC).ordinal(), 1);
assert_eq!(
    datetime!(2019-12-31 23:00 UTC)
        .to_offset(offset!(+1))
        .ordinal(),
    1,
);
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pub const fn iso_week(self) -> u8

Get the ISO week number of the date in the stored offset.

The returned value will always be in the range 1..=53.

assert_eq!(datetime!(2019-01-01 0:00 UTC).iso_week(), 1);
assert_eq!(datetime!(2020-01-01 0:00 UTC).iso_week(), 1);
assert_eq!(datetime!(2020-12-31 0:00 UTC).iso_week(), 53);
assert_eq!(datetime!(2021-01-01 0:00 UTC).iso_week(), 53);
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pub const fn sunday_based_week(self) -> u8

Get the week number where week 1 begins on the first Sunday.

The returned value will always be in the range 0..=53.

assert_eq!(datetime!(2019-01-01 0:00 UTC).sunday_based_week(), 0);
assert_eq!(datetime!(2020-01-01 0:00 UTC).sunday_based_week(), 0);
assert_eq!(datetime!(2020-12-31 0:00 UTC).sunday_based_week(), 52);
assert_eq!(datetime!(2021-01-01 0:00 UTC).sunday_based_week(), 0);
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pub const fn monday_based_week(self) -> u8

Get the week number where week 1 begins on the first Monday.

The returned value will always be in the range 0..=53.

assert_eq!(datetime!(2019-01-01 0:00 UTC).monday_based_week(), 0);
assert_eq!(datetime!(2020-01-01 0:00 UTC).monday_based_week(), 0);
assert_eq!(datetime!(2020-12-31 0:00 UTC).monday_based_week(), 52);
assert_eq!(datetime!(2021-01-01 0:00 UTC).monday_based_week(), 0);
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pub const fn to_calendar_date(self) -> (i32, Month, u8)

Get the year, month, and day.

assert_eq!(
    datetime!(2019-01-01 0:00 UTC).to_calendar_date(),
    (2019, Month::January, 1)
);
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pub const fn to_ordinal_date(self) -> (i32, u16)

Get the year and ordinal day number.

assert_eq!(
    datetime!(2019-01-01 0:00 UTC).to_ordinal_date(),
    (2019, 1)
);
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pub const fn to_iso_week_date(self) -> (i32, u8, Weekday)

Get the ISO 8601 year, week number, and weekday.

assert_eq!(
    datetime!(2019-01-01 0:00 UTC).to_iso_week_date(),
    (2019, 1, Tuesday)
);
assert_eq!(
    datetime!(2019-10-04 0:00 UTC).to_iso_week_date(),
    (2019, 40, Friday)
);
assert_eq!(
    datetime!(2020-01-01 0:00 UTC).to_iso_week_date(),
    (2020, 1, Wednesday)
);
assert_eq!(
    datetime!(2020-12-31 0:00 UTC).to_iso_week_date(),
    (2020, 53, Thursday)
);
assert_eq!(
    datetime!(2021-01-01 0:00 UTC).to_iso_week_date(),
    (2020, 53, Friday)
);
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pub const fn weekday(self) -> Weekday

Get the weekday of the date in the stored offset.

assert_eq!(datetime!(2019-01-01 0:00 UTC).weekday(), Tuesday);
assert_eq!(datetime!(2019-02-01 0:00 UTC).weekday(), Friday);
assert_eq!(datetime!(2019-03-01 0:00 UTC).weekday(), Friday);
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pub const fn to_julian_day(self) -> i32

Get the Julian day for the date. The time is not taken into account for this calculation.

The algorithm to perform this conversion is derived from one provided by Peter Baum; it is freely available here.

assert_eq!(datetime!(-4713-11-24 0:00 UTC).to_julian_day(), 0);
assert_eq!(datetime!(2000-01-01 0:00 UTC).to_julian_day(), 2_451_545);
assert_eq!(datetime!(2019-01-01 0:00 UTC).to_julian_day(), 2_458_485);
assert_eq!(datetime!(2019-12-31 0:00 UTC).to_julian_day(), 2_458_849);
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pub const fn to_hms(self) -> (u8, u8, u8)

Get the clock hour, minute, and second.

assert_eq!(datetime!(2020-01-01 0:00:00 UTC).to_hms(), (0, 0, 0));
assert_eq!(datetime!(2020-01-01 23:59:59 UTC).to_hms(), (23, 59, 59));
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pub const fn to_hms_milli(self) -> (u8, u8, u8, u16)

Get the clock hour, minute, second, and millisecond.

assert_eq!(
    datetime!(2020-01-01 0:00:00 UTC).to_hms_milli(),
    (0, 0, 0, 0)
);
assert_eq!(
    datetime!(2020-01-01 23:59:59.999 UTC).to_hms_milli(),
    (23, 59, 59, 999)
);
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pub const fn to_hms_micro(self) -> (u8, u8, u8, u32)

Get the clock hour, minute, second, and microsecond.

assert_eq!(
    datetime!(2020-01-01 0:00:00 UTC).to_hms_micro(),
    (0, 0, 0, 0)
);
assert_eq!(
    datetime!(2020-01-01 23:59:59.999_999 UTC).to_hms_micro(),
    (23, 59, 59, 999_999)
);
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pub const fn to_hms_nano(self) -> (u8, u8, u8, u32)

Get the clock hour, minute, second, and nanosecond.

assert_eq!(
    datetime!(2020-01-01 0:00:00 UTC).to_hms_nano(),
    (0, 0, 0, 0)
);
assert_eq!(
    datetime!(2020-01-01 23:59:59.999_999_999 UTC).to_hms_nano(),
    (23, 59, 59, 999_999_999)
);
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pub const fn hour(self) -> u8

Get the clock hour in the stored offset.

The returned value will always be in the range 0..24.

assert_eq!(datetime!(2019-01-01 0:00 UTC).hour(), 0);
assert_eq!(
    datetime!(2019-01-01 23:59:59 UTC)
        .to_offset(offset!(-2))
        .hour(),
    21,
);
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pub const fn minute(self) -> u8

Get the minute within the hour in the stored offset.

The returned value will always be in the range 0..60.

assert_eq!(datetime!(2019-01-01 0:00 UTC).minute(), 0);
assert_eq!(
    datetime!(2019-01-01 23:59:59 UTC)
        .to_offset(offset!(+0:30))
        .minute(),
    29,
);
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pub const fn second(self) -> u8

Get the second within the minute in the stored offset.

The returned value will always be in the range 0..60.

assert_eq!(datetime!(2019-01-01 0:00 UTC).second(), 0);
assert_eq!(
    datetime!(2019-01-01 23:59:59 UTC)
        .to_offset(offset!(+0:00:30))
        .second(),
    29,
);
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pub const fn millisecond(self) -> u16

Get the milliseconds within the second in the stored offset.

The returned value will always be in the range 0..1_000.

assert_eq!(datetime!(2019-01-01 0:00 UTC).millisecond(), 0);
assert_eq!(datetime!(2019-01-01 23:59:59.999 UTC).millisecond(), 999);
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pub const fn microsecond(self) -> u32

Get the microseconds within the second in the stored offset.

The returned value will always be in the range 0..1_000_000.

assert_eq!(datetime!(2019-01-01 0:00 UTC).microsecond(), 0);
assert_eq!(
    datetime!(2019-01-01 23:59:59.999_999 UTC).microsecond(),
    999_999,
);
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pub const fn nanosecond(self) -> u32

Get the nanoseconds within the second in the stored offset.

The returned value will always be in the range 0..1_000_000_000.

assert_eq!(datetime!(2019-01-01 0:00 UTC).nanosecond(), 0);
assert_eq!(
    datetime!(2019-01-01 23:59:59.999_999_999 UTC).nanosecond(),
    999_999_999,
);
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pub const fn checked_add(self, duration: Duration) -> Option<OffsetDateTime>

Computes self + duration, returning None if an overflow occurred.

let datetime = Date::MIN.midnight().assume_offset(offset!(+10));
assert_eq!(datetime.checked_add((-2).days()), None);

let datetime = Date::MAX.midnight().assume_offset(offset!(+10));
assert_eq!(datetime.checked_add(2.days()), None);

assert_eq!(
    datetime!(2019-11-25 15:30 +10).checked_add(27.hours()),
    Some(datetime!(2019-11-26 18:30 +10))
);
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pub const fn checked_sub(self, duration: Duration) -> Option<OffsetDateTime>

Computes self - duration, returning None if an overflow occurred.

let datetime = Date::MIN.midnight().assume_offset(offset!(+10));
assert_eq!(datetime.checked_sub(2.days()), None);

let datetime = Date::MAX.midnight().assume_offset(offset!(+10));
assert_eq!(datetime.checked_sub((-2).days()), None);

assert_eq!(
    datetime!(2019-11-25 15:30 +10).checked_sub(27.hours()),
    Some(datetime!(2019-11-24 12:30 +10))
);
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pub const fn saturating_add(self, duration: Duration) -> OffsetDateTime

Computes self + duration, saturating value on overflow.

assert_eq!(
    datetime!(-9999-01-01 0:00 +10).saturating_add((-2).days()),
    datetime!(-9999-01-01 0:00 +10)
);

assert_eq!(
    datetime!(+9999-12-31 23:59:59.999_999_999 +10).saturating_add(2.days()),
    datetime!(+9999-12-31 23:59:59.999_999_999 +10)
);

assert_eq!(
    datetime!(2019-11-25 15:30 +10).saturating_add(27.hours()),
    datetime!(2019-11-26 18:30 +10)
);
Source

pub const fn saturating_sub(self, duration: Duration) -> OffsetDateTime

Computes self - duration, saturating value on overflow.

assert_eq!(
    datetime!(-9999-01-01 0:00 +10).saturating_sub(2.days()),
    datetime!(-9999-01-01 0:00 +10)
);

assert_eq!(
    datetime!(+9999-12-31 23:59:59.999_999_999 +10).saturating_sub((-2).days()),
    datetime!(+9999-12-31 23:59:59.999_999_999 +10)
);

assert_eq!(
    datetime!(2019-11-25 15:30 +10).saturating_sub(27.hours()),
    datetime!(2019-11-24 12:30 +10)
);
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impl OffsetDateTime

Methods that replace part of the OffsetDateTime.

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pub const fn replace_time(self, time: Time) -> OffsetDateTime

Replace the time, which is assumed to be in the stored offset. The date and offset components are unchanged.

assert_eq!(
    datetime!(2020-01-01 5:00 UTC).replace_time(time!(12:00)),
    datetime!(2020-01-01 12:00 UTC)
);
assert_eq!(
    datetime!(2020-01-01 12:00 -5).replace_time(time!(7:00)),
    datetime!(2020-01-01 7:00 -5)
);
assert_eq!(
    datetime!(2020-01-01 0:00 +1).replace_time(time!(12:00)),
    datetime!(2020-01-01 12:00 +1)
);
Source

pub const fn replace_date(self, date: Date) -> OffsetDateTime

Replace the date, which is assumed to be in the stored offset. The time and offset components are unchanged.

assert_eq!(
    datetime!(2020-01-01 12:00 UTC).replace_date(date!(2020-01-30)),
    datetime!(2020-01-30 12:00 UTC)
);
assert_eq!(
    datetime!(2020-01-01 0:00 +1).replace_date(date!(2020-01-30)),
    datetime!(2020-01-30 0:00 +1)
);
Source

pub const fn replace_date_time( self, date_time: PrimitiveDateTime, ) -> OffsetDateTime

Replace the date and time, which are assumed to be in the stored offset. The offset component remains unchanged.

assert_eq!(
    datetime!(2020-01-01 12:00 UTC).replace_date_time(datetime!(2020-01-30 16:00)),
    datetime!(2020-01-30 16:00 UTC)
);
assert_eq!(
    datetime!(2020-01-01 12:00 +1).replace_date_time(datetime!(2020-01-30 0:00)),
    datetime!(2020-01-30 0:00 +1)
);
Source

pub const fn replace_offset(self, offset: UtcOffset) -> OffsetDateTime

Replace the offset. The date and time components remain unchanged.

assert_eq!(
    datetime!(2020-01-01 0:00 UTC).replace_offset(offset!(-5)),
    datetime!(2020-01-01 0:00 -5)
);
Source

pub const fn replace_year( self, year: i32, ) -> Result<OffsetDateTime, ComponentRange>

Replace the year. The month and day will be unchanged.

assert_eq!(
    datetime!(2022-02-18 12:00 +01).replace_year(2019),
    Ok(datetime!(2019-02-18 12:00 +01))
);
assert!(datetime!(2022-02-18 12:00 +01).replace_year(-1_000_000_000).is_err()); // -1_000_000_000 isn't a valid year
assert!(datetime!(2022-02-18 12:00 +01).replace_year(1_000_000_000).is_err()); // 1_000_000_000 isn't a valid year
Source

pub const fn replace_month( self, month: Month, ) -> Result<OffsetDateTime, ComponentRange>

Replace the month of the year.

assert_eq!(
    datetime!(2022-02-18 12:00 +01).replace_month(Month::January),
    Ok(datetime!(2022-01-18 12:00 +01))
);
assert!(datetime!(2022-01-30 12:00 +01).replace_month(Month::February).is_err()); // 30 isn't a valid day in February
Source

pub const fn replace_day( self, day: u8, ) -> Result<OffsetDateTime, ComponentRange>

Replace the day of the month.

assert_eq!(
    datetime!(2022-02-18 12:00 +01).replace_day(1),
    Ok(datetime!(2022-02-01 12:00 +01))
);
assert!(datetime!(2022-02-18 12:00 +01).replace_day(0).is_err()); // 00 isn't a valid day
assert!(datetime!(2022-02-18 12:00 +01).replace_day(30).is_err()); // 30 isn't a valid day in February
Source

pub const fn replace_ordinal( self, ordinal: u16, ) -> Result<OffsetDateTime, ComponentRange>

Replace the day of the year.

assert_eq!(datetime!(2022-049 12:00 +01).replace_ordinal(1), Ok(datetime!(2022-001 12:00 +01)));
assert!(datetime!(2022-049 12:00 +01).replace_ordinal(0).is_err()); // 0 isn't a valid ordinal
assert!(datetime!(2022-049 12:00 +01).replace_ordinal(366).is_err()); // 2022 isn't a leap year
Source

pub const fn replace_hour( self, hour: u8, ) -> Result<OffsetDateTime, ComponentRange>

Replace the clock hour.

assert_eq!(
    datetime!(2022-02-18 01:02:03.004_005_006 +01).replace_hour(7),
    Ok(datetime!(2022-02-18 07:02:03.004_005_006 +01))
);
assert!(datetime!(2022-02-18 01:02:03.004_005_006 +01).replace_hour(24).is_err()); // 24 isn't a valid hour
Source

pub const fn replace_minute( self, minute: u8, ) -> Result<OffsetDateTime, ComponentRange>

Replace the minutes within the hour.

assert_eq!(
    datetime!(2022-02-18 01:02:03.004_005_006 +01).replace_minute(7),
    Ok(datetime!(2022-02-18 01:07:03.004_005_006 +01))
);
assert!(datetime!(2022-02-18 01:02:03.004_005_006 +01).replace_minute(60).is_err()); // 60 isn't a valid minute
Source

pub const fn replace_second( self, second: u8, ) -> Result<OffsetDateTime, ComponentRange>

Replace the seconds within the minute.

assert_eq!(
    datetime!(2022-02-18 01:02:03.004_005_006 +01).replace_second(7),
    Ok(datetime!(2022-02-18 01:02:07.004_005_006 +01))
);
assert!(datetime!(2022-02-18 01:02:03.004_005_006 +01).replace_second(60).is_err()); // 60 isn't a valid second
Source

pub const fn replace_millisecond( self, millisecond: u16, ) -> Result<OffsetDateTime, ComponentRange>

Replace the milliseconds within the second.

assert_eq!(
    datetime!(2022-02-18 01:02:03.004_005_006 +01).replace_millisecond(7),
    Ok(datetime!(2022-02-18 01:02:03.007 +01))
);
assert!(datetime!(2022-02-18 01:02:03.004_005_006 +01).replace_millisecond(1_000).is_err()); // 1_000 isn't a valid millisecond
Source

pub const fn replace_microsecond( self, microsecond: u32, ) -> Result<OffsetDateTime, ComponentRange>

Replace the microseconds within the second.

assert_eq!(
    datetime!(2022-02-18 01:02:03.004_005_006 +01).replace_microsecond(7_008),
    Ok(datetime!(2022-02-18 01:02:03.007_008 +01))
);
assert!(datetime!(2022-02-18 01:02:03.004_005_006 +01).replace_microsecond(1_000_000).is_err()); // 1_000_000 isn't a valid microsecond
Source

pub const fn replace_nanosecond( self, nanosecond: u32, ) -> Result<OffsetDateTime, ComponentRange>

Replace the nanoseconds within the second.

assert_eq!(
    datetime!(2022-02-18 01:02:03.004_005_006 +01).replace_nanosecond(7_008_009),
    Ok(datetime!(2022-02-18 01:02:03.007_008_009 +01))
);
assert!(datetime!(2022-02-18 01:02:03.004_005_006 +01).replace_nanosecond(1_000_000_000).is_err()); // 1_000_000_000 isn't a valid nanosecond
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impl OffsetDateTime

Source

pub fn format_into( self, output: &mut (impl Write + ?Sized), format: &(impl Formattable + ?Sized), ) -> Result<usize, Format>

Format the OffsetDateTime using the provided format description.

Source

pub fn format( self, format: &(impl Formattable + ?Sized), ) -> Result<String, Format>

Format the OffsetDateTime using the provided format description.

let format = format_description::parse(
    "[year]-[month]-[day] [hour]:[minute]:[second] [offset_hour \
         sign:mandatory]:[offset_minute]:[offset_second]",
)?;
assert_eq!(
    datetime!(2020-01-02 03:04:05 +06:07:08).format(&format)?,
    "2020-01-02 03:04:05 +06:07:08"
);
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impl OffsetDateTime

Source

pub fn parse( input: &str, description: &(impl Parsable + ?Sized), ) -> Result<OffsetDateTime, Parse>

Parse an OffsetDateTime from the input using the provided format description.

let format = format_description!(
    "[year]-[month]-[day] [hour]:[minute]:[second] [offset_hour \
         sign:mandatory]:[offset_minute]:[offset_second]"
);
assert_eq!(
    OffsetDateTime::parse("2020-01-02 03:04:05 +06:07:08", &format)?,
    datetime!(2020-01-02 03:04:05 +06:07:08)
);

Trait Implementations§

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impl Add<Duration> for OffsetDateTime

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fn add(self, duration: Duration) -> <OffsetDateTime as Add<Duration>>::Output

§Panics

This may panic if an overflow occurs.

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type Output = OffsetDateTime

The resulting type after applying the + operator.
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impl Add<Duration> for OffsetDateTime

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fn add(self, duration: Duration) -> <OffsetDateTime as Add<Duration>>::Output

§Panics

This may panic if an overflow occurs.

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type Output = OffsetDateTime

The resulting type after applying the + operator.
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impl AddAssign<Duration> for OffsetDateTime

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fn add_assign(&mut self, rhs: Duration)

§Panics

This may panic if an overflow occurs.

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impl AddAssign<Duration> for OffsetDateTime

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fn add_assign(&mut self, rhs: Duration)

§Panics

This may panic if an overflow occurs.

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impl Clone for OffsetDateTime

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fn clone(&self) -> OffsetDateTime

Returns a duplicate of the value. Read more
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fn clone_from(&mut self, source: &Self)

Performs copy-assignment from source. Read more
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impl Debug for OffsetDateTime

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fn fmt(&self, f: &mut Formatter<'_>) -> Result<(), Error>

Formats the value using the given formatter. Read more
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impl<'r> Decode<'r, MySql> for OffsetDateTime

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fn decode( value: MySqlValueRef<'r>, ) -> Result<OffsetDateTime, Box<dyn Error + Sync + Send>>

Decode a new value of this type using a raw value from the database.
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impl<'r> Decode<'r, Postgres> for OffsetDateTime

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fn decode( value: PgValueRef<'r>, ) -> Result<OffsetDateTime, Box<dyn Error + Sync + Send>>

Decode a new value of this type using a raw value from the database.
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impl<'r> Decode<'r, Sqlite> for OffsetDateTime

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fn decode( value: SqliteValueRef<'r>, ) -> Result<OffsetDateTime, Box<dyn Error + Sync + Send>>

Decode a new value of this type using a raw value from the database.
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impl<'a> Deserialize<'a> for OffsetDateTime

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fn deserialize<D>( deserializer: D, ) -> Result<OffsetDateTime, <D as Deserializer<'a>>::Error>
where D: Deserializer<'a>,

Deserialize this value from the given Serde deserializer. Read more
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impl Display for OffsetDateTime

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fn fmt(&self, f: &mut Formatter<'_>) -> Result<(), Error>

Formats the value using the given formatter. Read more
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impl Encode<'_, MySql> for OffsetDateTime

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fn encode_by_ref( &self, buf: &mut Vec<u8>, ) -> Result<IsNull, Box<dyn Error + Sync + Send>>

Writes the value of self into buf without moving self. Read more
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fn encode( self, buf: &mut <DB as Database>::ArgumentBuffer<'q>, ) -> Result<IsNull, Box<dyn Error + Sync + Send>>
where Self: Sized,

Writes the value of self into buf in the expected format for the database.
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fn produces(&self) -> Option<<DB as Database>::TypeInfo>

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fn size_hint(&self) -> usize

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impl Encode<'_, Postgres> for OffsetDateTime

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fn encode_by_ref( &self, buf: &mut PgArgumentBuffer, ) -> Result<IsNull, Box<dyn Error + Sync + Send>>

Writes the value of self into buf without moving self. Read more
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fn size_hint(&self) -> usize

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fn encode( self, buf: &mut <DB as Database>::ArgumentBuffer<'q>, ) -> Result<IsNull, Box<dyn Error + Sync + Send>>
where Self: Sized,

Writes the value of self into buf in the expected format for the database.
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fn produces(&self) -> Option<<DB as Database>::TypeInfo>

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impl Encode<'_, Sqlite> for OffsetDateTime

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fn encode_by_ref( &self, buf: &mut Vec<SqliteArgumentValue<'_>>, ) -> Result<IsNull, Box<dyn Error + Sync + Send>>

Writes the value of self into buf without moving self. Read more
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fn encode( self, buf: &mut <DB as Database>::ArgumentBuffer<'q>, ) -> Result<IsNull, Box<dyn Error + Sync + Send>>
where Self: Sized,

Writes the value of self into buf in the expected format for the database.
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fn produces(&self) -> Option<<DB as Database>::TypeInfo>

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fn size_hint(&self) -> usize

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impl From<SystemTime> for OffsetDateTime

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fn from(system_time: SystemTime) -> OffsetDateTime

Converts to this type from the input type.
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impl From<UtcDateTime> for OffsetDateTime

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fn from(datetime: UtcDateTime) -> OffsetDateTime

§Panics

This may panic if an overflow occurs.

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impl Hash for OffsetDateTime

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fn hash<H>(&self, state: &mut H)
where H: Hasher,

Feeds this value into the given Hasher. Read more
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fn hash_slice<H>(data: &[Self], state: &mut H)
where H: Hasher, Self: Sized,

Feeds a slice of this type into the given Hasher. Read more
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impl IntoActiveValue<OffsetDateTime> for OffsetDateTime

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fn into_active_value(self) -> ActiveValue<OffsetDateTime>

Method to perform the conversion
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impl Nullable for OffsetDateTime

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impl Ord for OffsetDateTime

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fn cmp(&self, other: &OffsetDateTime) -> Ordering

This method returns an Ordering between self and other. Read more
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fn max(self, other: Self) -> Self
where Self: Sized,

Compares and returns the maximum of two values. Read more
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fn min(self, other: Self) -> Self
where Self: Sized,

Compares and returns the minimum of two values. Read more
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fn clamp(self, min: Self, max: Self) -> Self
where Self: Sized,

Restrict a value to a certain interval. Read more
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impl PartialEq<SystemTime> for OffsetDateTime

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fn eq(&self, rhs: &SystemTime) -> bool

Tests for self and other values to be equal, and is used by ==.
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fn ne(&self, other: &Rhs) -> bool

Tests for !=. The default implementation is almost always sufficient, and should not be overridden without very good reason.
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impl PartialEq<UtcDateTime> for OffsetDateTime

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fn eq(&self, other: &UtcDateTime) -> bool

Tests for self and other values to be equal, and is used by ==.
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fn ne(&self, other: &Rhs) -> bool

Tests for !=. The default implementation is almost always sufficient, and should not be overridden without very good reason.
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impl PartialEq for OffsetDateTime

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fn eq(&self, other: &OffsetDateTime) -> bool

Tests for self and other values to be equal, and is used by ==.
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fn ne(&self, other: &Rhs) -> bool

Tests for !=. The default implementation is almost always sufficient, and should not be overridden without very good reason.
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impl PartialOrd<SystemTime> for OffsetDateTime

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fn partial_cmp(&self, other: &SystemTime) -> Option<Ordering>

This method returns an ordering between self and other values if one exists. Read more
1.0.0§

fn lt(&self, other: &Rhs) -> bool

Tests less than (for self and other) and is used by the < operator. Read more
1.0.0§

fn le(&self, other: &Rhs) -> bool

Tests less than or equal to (for self and other) and is used by the <= operator. Read more
1.0.0§

fn gt(&self, other: &Rhs) -> bool

Tests greater than (for self and other) and is used by the > operator. Read more
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fn ge(&self, other: &Rhs) -> bool

Tests greater than or equal to (for self and other) and is used by the >= operator. Read more
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impl PartialOrd<UtcDateTime> for OffsetDateTime

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fn partial_cmp(&self, other: &UtcDateTime) -> Option<Ordering>

This method returns an ordering between self and other values if one exists. Read more
1.0.0§

fn lt(&self, other: &Rhs) -> bool

Tests less than (for self and other) and is used by the < operator. Read more
1.0.0§

fn le(&self, other: &Rhs) -> bool

Tests less than or equal to (for self and other) and is used by the <= operator. Read more
1.0.0§

fn gt(&self, other: &Rhs) -> bool

Tests greater than (for self and other) and is used by the > operator. Read more
1.0.0§

fn ge(&self, other: &Rhs) -> bool

Tests greater than or equal to (for self and other) and is used by the >= operator. Read more
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impl PartialOrd for OffsetDateTime

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fn partial_cmp(&self, other: &OffsetDateTime) -> Option<Ordering>

This method returns an ordering between self and other values if one exists. Read more
1.0.0§

fn lt(&self, other: &Rhs) -> bool

Tests less than (for self and other) and is used by the < operator. Read more
1.0.0§

fn le(&self, other: &Rhs) -> bool

Tests less than or equal to (for self and other) and is used by the <= operator. Read more
1.0.0§

fn gt(&self, other: &Rhs) -> bool

Tests greater than (for self and other) and is used by the > operator. Read more
1.0.0§

fn ge(&self, other: &Rhs) -> bool

Tests greater than or equal to (for self and other) and is used by the >= operator. Read more
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impl PgHasArrayType for OffsetDateTime

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impl Serialize for OffsetDateTime

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fn serialize<S>( &self, serializer: S, ) -> Result<<S as Serializer>::Ok, <S as Serializer>::Error>
where S: Serializer,

Serialize this value into the given Serde serializer. Read more
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impl SmartDisplay for OffsetDateTime

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type Metadata = ()

User-provided metadata type.
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fn metadata(&self, _: FormatterOptions) -> Metadata<'_, OffsetDateTime>

Compute any information needed to format the value. This must, at a minimum, determine the width of the value before any padding is added by the formatter. Read more
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fn fmt_with_metadata( &self, f: &mut Formatter<'_>, metadata: Metadata<'_, OffsetDateTime>, ) -> Result<(), Error>

Format the value using the given formatter and metadata. The formatted output should have the width indicated by the metadata. This is before any padding is added by the formatter. Read more
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fn fmt(&self, f: &mut Formatter<'_>) -> Result<(), Error>

Format the value using the given formatter. This is the same as Display::fmt. Read more
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impl Sub<Duration> for OffsetDateTime

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fn sub(self, rhs: Duration) -> <OffsetDateTime as Sub<Duration>>::Output

§Panics

This may panic if an overflow occurs.

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type Output = OffsetDateTime

The resulting type after applying the - operator.
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impl Sub<Duration> for OffsetDateTime

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fn sub(self, duration: Duration) -> <OffsetDateTime as Sub<Duration>>::Output

§Panics

This may panic if an overflow occurs.

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type Output = OffsetDateTime

The resulting type after applying the - operator.
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impl Sub<SystemTime> for OffsetDateTime

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fn sub(self, rhs: SystemTime) -> <OffsetDateTime as Sub<SystemTime>>::Output

§Panics

This may panic if an overflow occurs.

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type Output = Duration

The resulting type after applying the - operator.
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impl Sub<UtcDateTime> for OffsetDateTime

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fn sub(self, rhs: UtcDateTime) -> <OffsetDateTime as Sub<UtcDateTime>>::Output

§Panics

This may panic if an overflow occurs.

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type Output = Duration

The resulting type after applying the - operator.
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impl Sub for OffsetDateTime

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fn sub(self, rhs: OffsetDateTime) -> <OffsetDateTime as Sub>::Output

§Panics

This may panic if an overflow occurs.

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type Output = Duration

The resulting type after applying the - operator.
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impl SubAssign<Duration> for OffsetDateTime

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fn sub_assign(&mut self, rhs: Duration)

§Panics

This may panic if an overflow occurs.

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impl SubAssign<Duration> for OffsetDateTime

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fn sub_assign(&mut self, rhs: Duration)

§Panics

This may panic if an overflow occurs.

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impl ToSchema for OffsetDateTime

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fn to_schema(_components: &mut Components) -> RefOr<Schema>

Returns a tuple of name and schema or reference to a schema that can be referenced by the name or inlined directly to responses, request bodies or parameters.
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impl TryFrom<Parsed> for OffsetDateTime

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type Error = TryFromParsed

The type returned in the event of a conversion error.
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fn try_from( parsed: Parsed, ) -> Result<OffsetDateTime, <OffsetDateTime as TryFrom<Parsed>>::Error>

Performs the conversion.
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impl TryFromU64 for OffsetDateTime

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fn try_from_u64(_: u64) -> Result<OffsetDateTime, DbErr>

The method to convert the type to a u64
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impl TryGetable for OffsetDateTime

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fn try_get_by<I>( res: &QueryResult, idx: I, ) -> Result<OffsetDateTime, TryGetError>
where I: ColIdx,

Get a value from the query result with an ColIdx
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fn try_get(res: &QueryResult, pre: &str, col: &str) -> Result<Self, TryGetError>

Get a value from the query result with prefixed column name
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fn try_get_by_index( res: &QueryResult, index: usize, ) -> Result<Self, TryGetError>

Get a value from the query result based on the order in the select expressions
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impl Type<MySql> for OffsetDateTime

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fn type_info() -> MySqlTypeInfo

Returns the canonical SQL type for this Rust type. Read more
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fn compatible(ty: &MySqlTypeInfo) -> bool

Determines if this Rust type is compatible with the given SQL type. Read more
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impl Type<Postgres> for OffsetDateTime

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fn type_info() -> PgTypeInfo

Returns the canonical SQL type for this Rust type. Read more
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fn compatible(ty: &<DB as Database>::TypeInfo) -> bool

Determines if this Rust type is compatible with the given SQL type. Read more
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impl Type<Sqlite> for OffsetDateTime

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fn type_info() -> SqliteTypeInfo

Returns the canonical SQL type for this Rust type. Read more
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fn compatible(ty: &SqliteTypeInfo) -> bool

Determines if this Rust type is compatible with the given SQL type. Read more
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impl ValueType for OffsetDateTime

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impl Copy for OffsetDateTime

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impl Eq for OffsetDateTime

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impl NotU8 for OffsetDateTime

Available on crate feature with-time only.

Auto Trait Implementations§

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where T: 'static + ?Sized,

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Gets the TypeId of self. Read more
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where T: ?Sized,

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fn borrow(&self) -> &T

Immutably borrows from an owned value. Read more
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fn borrow_mut(&mut self) -> &mut T

Mutably borrows from an owned value. Read more
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where T: Clone,

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unsafe fn clone_to_uninit(&self, dest: *mut u8)

🔬This is a nightly-only experimental API. (clone_to_uninit)
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fn compare(&self, key: &K) -> Ordering

Compare self to key and return their ordering.
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fn equivalent(&self, key: &K) -> bool

Checks if this value is equivalent to the given key. Read more
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Compare self to key and return true if they are equal.
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where T: Into<SimpleExpr>,

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Express a equal expression between two table columns, you will mainly use this to relate identical value between two table columns. Read more
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Express a greater than (>) expression. Read more
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where R: Into<SimpleExpr>,

Express a greater than or equal (>=) expression. Read more
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Express a IN sub-query expression. Read more
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where V: IntoValueTuple, I: IntoIterator<Item = V>,

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Express a IS NOT expression. Read more
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Express a IS NOT NULL expression. Read more
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Express a bitwise left shift. Read more
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where L: IntoLikeExpr,

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where R: Into<SimpleExpr>,

Express a less than (<) expression. Read more
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where R: Into<SimpleExpr>,

Express a less than or equal (<=) expression. Read more
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Express a not equal (<>) expression. Read more
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where A: Into<SimpleExpr>, B: Into<SimpleExpr>,

Express a NOT BETWEEN expression. Read more
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where C: IntoColumnRef,

Express a not equal expression between two table columns, you will mainly use this to relate identical value between two table columns. Read more
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Express a NOT IN sub-query expression. Read more
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Express a NOT LIKE expression. Read more
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