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import (
"errors"
"fmt"
"time"
"github.com/openmeterio/openmeter/pkg/datetime"
)
const MAX_SAFE_ITERATIONS = 1_000_000
type Recurrence struct {
Interval RecurrenceInterval `json:"interval"`
// Anchor can be an arbitrary anchor time for the recurrence.
// It does not have to be the last or the next time.
Anchor time.Time `json:"anchor"`
}
func (r Recurrence) Validate() error {
var errs []error
if r.Interval.ISODuration.Sign() != 1 {
errs = append(errs, fmt.Errorf("recurrence interval must be positive"))
}
if r.Anchor.IsZero() {
errs = append(errs, fmt.Errorf("recurrence anchor must be set"))
}
return errors.Join(errs...)
}
// Returns a period where p.Contains(t) is true
func (r Recurrence) GetPeriodAt(t time.Time) (ClosedPeriod, error) {
var def ClosedPeriod
next, err := r.IterateFromNextAfter(t, Exclusive)
if err != nil {
return def, err
}
// As Period.Contains() is inclusive at the start and exclusive at the end, we need to get the next time
if next.At.Equal(t) {
start := next
end, err := start.Next()
if err != nil {
return def, err
}
return ClosedPeriod{start.At, end.At}, nil
}
// Otherwise the next time will be the end
prev, err := r.IterateFromPrevBefore(t, Inclusive)
if err != nil {
return def, err
}
return ClosedPeriod{prev.At, next.At}, nil
}
// IterateFromNextAfter returns the next time after (or equal to) t that the recurrence should occur.
//
// If boundaryBehavior is Inclusive, if t matches a recurrence value, we return t as is.
// If boundaryBehavior is Exclusive, if t matches a recurrence value, we return the next recurrence value.
func (r Recurrence) IterateFromNextAfter(t time.Time, boundaryBehavior Boundary) (RecurrenceIterator, error) {
if err := boundaryBehavior.Validate(); err != nil {
return RecurrenceIterator{}, err
}
if t.IsZero() {
return RecurrenceIterator{}, fmt.Errorf("t cannot be zero")
}
inclusiveNextAfter, err := r.iterateFromNextAfterInclusive(t)
if err != nil {
return RecurrenceIterator{}, err
}
if boundaryBehavior == Exclusive && inclusiveNextAfter.At.Equal(t) {
return inclusiveNextAfter.Next()
}
return inclusiveNextAfter, nil
}
// NextAfter is a convenience function that returns the next time after t that the recurrence should occur.
// It is equivalent to calling IterateFromNextAfter and returning the At field of the iterator.
//
// If boundaryBehavior is Inclusive, if t matches a recurrence value, we return t as is.
// If boundaryBehavior is Exclusive, if t matches a recurrence value, we return the next recurrence value.
func (r Recurrence) NextAfter(t time.Time, boundaryBehavior Boundary) (time.Time, error) {
iter, err := r.IterateFromNextAfter(t, boundaryBehavior)
if err != nil {
return time.Time{}, err
}
return iter.At, nil
}
func (r Recurrence) iterateFromNextAfterInclusive(t time.Time) (RecurrenceIterator, error) {
// If the anchor is in the future, we call .Prev() repeatedly. If the new value is Before t, we break
if r.Anchor.After(t) {
res := r.Anchor
ic := 0
// Calculate the inclusive nextAfter value
for res.After(t) {
// TODO: Right now we cannot iterate backwards past 1733, please fix this.
if ic <= -MAX_SAFE_ITERATIONS {
return RecurrenceIterator{}, fmt.Errorf("recurrence.NextAfter: too many iterations")
}
ic -= 1
v, err := r.addIntervalNTimes(r.Anchor, ic)
if err != nil {
return RecurrenceIterator{}, err
}
if v.Before(t) {
break
}
res = v
}
return RecurrenceIterator{
r: r,
iteration: ic,
At: res,
}, nil
}
// If the anchor is in the past, we call .Next() repeatedly. If the new value is !Before T, we break
if r.Anchor.Before(t) {
res := r.Anchor
ic := 0
// Calculate the inclusive nextAfter value
for res.Before(t) {
if ic >= MAX_SAFE_ITERATIONS {
return RecurrenceIterator{}, fmt.Errorf("recurrence.NextAfter: too many iterations")
}
ic += 1
v, err := r.addIntervalNTimes(r.Anchor, ic)
if err != nil {
return RecurrenceIterator{}, err
}
res = v
}
return RecurrenceIterator{
r: r,
iteration: ic,
At: res,
}, nil
}
return r.Iterator(), nil
}
// IterateFromPrevBefore returns the previous time before (or equal to) t that the recurrence should occur.
//
// If boundaryBehavior is Inclusive, if t matches a recurrence value, we return t as is.
// If boundaryBehavior is Exclusive, if t matches a recurrence value, we return the previous recurrence value.
func (r Recurrence) IterateFromPrevBefore(t time.Time, boundaryBehavior Boundary) (RecurrenceIterator, error) {
if err := boundaryBehavior.Validate(); err != nil {
return RecurrenceIterator{}, err
}
if t.IsZero() {
return RecurrenceIterator{}, fmt.Errorf("t cannot be zero")
}
inclusivePrevBefore, err := r.iterateFromPrevBeforeInclusive(t)
if err != nil {
return RecurrenceIterator{}, err
}
if boundaryBehavior == Exclusive && inclusivePrevBefore.At.Equal(t) {
return inclusivePrevBefore.Prev()
}
return inclusivePrevBefore, nil
}
// PrevBefore is a convenience function that returns the previous time before t that the recurrence should occur.
// It is equivalent to calling IterateFromPrevBefore and returning the At field of the iterator.
//
// If boundaryBehavior is Inclusive, if t matches a recurrence value, we return t as is.
// If boundaryBehavior is Exclusive, if t matches a recurrence value, we return the previous recurrence value.
func (r Recurrence) PrevBefore(t time.Time, boundaryBehavior Boundary) (time.Time, error) {
iter, err := r.IterateFromPrevBefore(t, boundaryBehavior)
if err != nil {
return time.Time{}, err
}
return iter.At, nil
}
// IterateFromPrevBefore returns the previous time before t that the recurrence should occur.
//
// If t is an iteration boundary, it will return the previous iteration (as the start of a period is inclusive).
func (r Recurrence) iterateFromPrevBeforeInclusive(t time.Time) (RecurrenceIterator, error) {
// If the anchor is in the future, we call .Prev() repeatedly. If the new value is Before t, we break
if r.Anchor.After(t) {
res := r.Anchor
ic := 0
for res.After(t) {
if ic <= -MAX_SAFE_ITERATIONS {
return RecurrenceIterator{}, fmt.Errorf("recurrence.PrevBefore: too many iterations")
}
ic -= 1
v, err := r.addIntervalNTimes(r.Anchor, ic)
if err != nil {
return RecurrenceIterator{}, err
}
res = v
}
return RecurrenceIterator{
r: r,
iteration: ic,
At: res,
}, nil
// If the anchor is T or in the past relative, we call .Next() repeatedly. If the new value is !Before T, we break
}
if r.Anchor.Before(t) {
res := r.Anchor
ic := 0
for res.Before(t) {
if ic >= MAX_SAFE_ITERATIONS {
return RecurrenceIterator{}, fmt.Errorf("recurrence.PrevBefore: too many iterations")
}
ic += 1
v, err := r.addIntervalNTimes(r.Anchor, ic)
if err != nil {
return RecurrenceIterator{}, err
}
if v.After(t) {
break
}
res = v
}
return RecurrenceIterator{
r: r,
iteration: ic,
At: res,
}, nil
}
return r.Iterator(), nil
}
// Iterator returns an iterator that starts at the anchor.
func (r Recurrence) Iterator() RecurrenceIterator {
return RecurrenceIterator{
r: r,
iteration: 0,
At: r.Anchor,
}
}
func (r Recurrence) addIntervalNTimes(t time.Time, nrIntervals int) (time.Time, error) {
interval, err := r.Interval.Mul(nrIntervals)
if err != nil {
return time.Time{}, err
}
n, ok := interval.AddTo(t)
if !ok {
return time.Time{}, fmt.Errorf("next recurrence calculation wasn't exact, likely a fractional duration: %v", r.Interval)
}
return n, nil
}
type RecurrenceIterator struct {
r Recurrence
iteration int
At time.Time
}
func (i RecurrenceIterator) Next() (RecurrenceIterator, error) {
return i.iteratorWithDelta(1)
}
func (i RecurrenceIterator) Prev() (RecurrenceIterator, error) {
return i.iteratorWithDelta(-1)
}
func (i RecurrenceIterator) iteratorWithDelta(delta int) (RecurrenceIterator, error) {
i.iteration += delta
res, err := i.r.addIntervalNTimes(i.r.Anchor, i.iteration)
if err != nil {
return RecurrenceIterator{}, err
}
i.At = res
return i, nil
}
type RecurrenceInterval struct {
datetime.ISODuration
}
var (
RecurrencePeriodDaily RecurrenceInterval = RecurrenceInterval{datetime.DurationDay}
RecurrencePeriodWeek RecurrenceInterval = RecurrenceInterval{datetime.DurationWeek}
RecurrencePeriodMonth RecurrenceInterval = RecurrenceInterval{datetime.DurationMonth}
RecurrencePeriodYear RecurrenceInterval = RecurrenceInterval{datetime.DurationYear}
)
func NewRecurrenceFromISODuration(p datetime.ISODuration, anchor time.Time) (Recurrence, error) {
return NewRecurrence(RecurrenceInterval{p}, anchor)
}
func NewRecurrence(p RecurrenceInterval, anchor time.Time) (Recurrence, error) {
rec := Recurrence{
Interval: p,
Anchor: anchor,
}
if err := rec.Validate(); err != nil {
return Recurrence{}, err
}
return rec, nil
}
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