package basic import ( "math" . "b612.me/astro/tools" ) // Pos const ( MARS_S_PERIOD = 1 / ((1 / 365.256363004) - (1 / 686.98)) marsEventSearchN = 16 marsPhaseCoarseTolerance = 30.0 / 86400.0 marsStationDerivativeStepDay = 0.01 marsStationCoarseStepDay = 6.0 marsStationHalfWindowDay = 6.0 ) func marsSunLongitudeDelta(jde, degree float64, filter bool) float64 { sub := Limit360(Limit360(MarsApparentLo(jde)-HSunApparentLo(jde)) - degree) if filter { if sub > 180 { sub -= 360 } if sub < -180 { sub += 360 } } return sub } func marsSunLongitudeDeltaN(jde, degree float64, filter bool, n int) float64 { sub := Limit360(Limit360(MarsApparentLoN(jde, n)-HSunApparentLoN(jde, n)) - degree) if filter { if sub > 180 { sub -= 360 } if sub < -180 { sub += 360 } } return sub } func marsRADerivative(jde, val float64) float64 { sub := MarsApparentRa(jde+val) - MarsApparentRa(jde-val) if sub > 180 { sub -= 360 } if sub < -180 { sub += 360 } return sub / (2 * val) } func marsRADerivativeN(jde, val float64, n int) float64 { sub := MarsApparentRaN(jde+val, n) - MarsApparentRaN(jde-val, n) if sub > 180 { sub -= 360 } if sub < -180 { sub += 360 } return sub / (2 * val) } func marsConjunctionFull(jde, degree float64, next uint8) float64 { //0=last 1=next if !isFiniteFloat(jde) || !isFiniteFloat(degree) { return math.NaN() } daysPerDegree := MARS_S_PERIOD / 360 currentDelta := marsSunLongitudeDelta(jde, degree, false) if next == 0 { jde -= (360 - currentDelta) * daysPerDegree } else { jde += daysPerDegree * currentDelta } estimateJD := jde converged := false for i := 0; i < eventNewtonMaxIterations; i++ { prevJD := estimateJD longitudeDelta := marsSunLongitudeDelta(prevJD, degree, true) longitudeSlope := (marsSunLongitudeDelta(prevJD+0.000005, degree, true) - marsSunLongitudeDelta(prevJD-0.000005, degree, true)) / 0.00001 nextJD := prevJD - longitudeDelta/longitudeSlope estimateJD = nextJD if math.Abs(nextJD-prevJD) <= 0.00001 { converged = true break } } if !converged { return math.NaN() } return TD2UT(estimateJD, false) } func marsConjunction(jde, degree float64, next uint8) float64 { //0=last 1=next if !isFiniteFloat(jde) || !isFiniteFloat(degree) { return math.NaN() } daysPerDegree := MARS_S_PERIOD / 360 currentDelta := marsSunLongitudeDelta(jde, degree, false) if next == 0 { jde -= (360 - currentDelta) * daysPerDegree } else { jde += daysPerDegree * currentDelta } estimateJD := jde converged := false for i := 0; i < eventNewtonMaxIterations; i++ { prevJD := estimateJD longitudeDelta := marsSunLongitudeDeltaN(prevJD, degree, true, marsEventSearchN) longitudeSlope := (marsSunLongitudeDeltaN(prevJD+0.000005, degree, true, marsEventSearchN) - marsSunLongitudeDeltaN(prevJD-0.000005, degree, true, marsEventSearchN)) / 0.00001 nextJD := prevJD - longitudeDelta/longitudeSlope estimateJD = nextJD if math.Abs(nextJD-prevJD) <= marsPhaseCoarseTolerance { converged = true break } } if !converged { return math.NaN() } converged = false for i := 0; i < eventNewtonMaxIterations; i++ { prevJD := estimateJD longitudeDelta := marsSunLongitudeDelta(prevJD, degree, true) longitudeSlope := (marsSunLongitudeDelta(prevJD+0.000005, degree, true) - marsSunLongitudeDelta(prevJD-0.000005, degree, true)) / 0.00001 nextJD := prevJD - longitudeDelta/longitudeSlope estimateJD = nextJD if math.Abs(nextJD-prevJD) <= 0.00001 { converged = true break } } if !converged { return math.NaN() } return TD2UT(estimateJD, false) } func LastMarsConjunction(jde float64) float64 { return inclusiveLastPhaseEvent(jde, 0, marsConjunction) } func NextMarsConjunction(jde float64) float64 { return inclusiveNextPhaseEvent(jde, 0, marsConjunction) } func LastMarsOpposition(jde float64) float64 { return inclusiveLastPhaseEvent(jde, 180, marsConjunction) } func NextMarsOpposition(jde float64) float64 { return inclusiveNextPhaseEvent(jde, 180, marsConjunction) } func NextMarsEasternQuadrature(jde float64) float64 { return inclusiveNextPhaseEvent(jde, 90, marsConjunction) } func LastMarsEasternQuadrature(jde float64) float64 { return inclusiveLastPhaseEvent(jde, 90, marsConjunction) } func NextMarsWesternQuadrature(jde float64) float64 { return inclusiveNextPhaseEvent(jde, 270, marsConjunction) } func LastMarsWesternQuadrature(jde float64) float64 { return inclusiveLastPhaseEvent(jde, 270, marsConjunction) } func marsRetrogradeAroundOpposition(oppositionJD float64, searchBeforeOpposition bool) float64 { oppositionTT := TD2UT(oppositionJD, true) startTT := oppositionTT endTT := oppositionTT if searchBeforeOpposition { easternQuadratureUT := marsConjunction(oppositionTT, 90, 0) startTT = TD2UT(easternQuadratureUT, true) } else { westernQuadratureUT := marsConjunction(oppositionTT, 270, 1) endTT = TD2UT(westernQuadratureUT, true) } bestJD := zeroEventInWindow(startTT, endTT, marsStationCoarseStepDay, marsStationHalfWindowDay, 30.0/86400.0, func(jd float64) float64 { return marsRADerivativeN(jd, marsStationDerivativeStepDay, marsEventSearchN) }, func(jd float64) float64 { return marsRADerivative(jd, marsStationDerivativeStepDay) }) return TD2UT(bestJD, false) } func NextMarsRetrogradeToPrograde(jde float64) float64 { lastOppositionJD := marsConjunctionFull(jde, 180, 0) date := marsRetrogradeAroundOpposition(lastOppositionJD, false) if sameEventUTQueryTT(date, jde) || eventUTQueryAfterOrEqual(date, jde) { return date } nextOppositionJD := marsConjunctionFull(jde, 180, 1) return marsRetrogradeAroundOpposition(nextOppositionJD, false) } func LastMarsRetrogradeToPrograde(jde float64) float64 { lastOppositionJD := marsConjunctionFull(jde, 180, 0) date := marsRetrogradeAroundOpposition(lastOppositionJD, false) if sameEventUTQueryTT(date, jde) || eventUTQueryBeforeOrEqual(date, jde) { return date } previousOppositionJD := marsConjunctionFull(eventUTLastQueryTT(lastOppositionJD), 180, 0) return marsRetrogradeAroundOpposition(previousOppositionJD, false) } func NextMarsProgradeToRetrograde(jde float64) float64 { nextOppositionJD := marsConjunctionFull(jde, 180, 1) date := marsRetrogradeAroundOpposition(nextOppositionJD, true) if sameEventUTQueryTT(date, jde) || eventUTQueryAfterOrEqual(date, jde) { return date } followingOppositionJD := marsConjunctionFull(eventUTNextQueryTT(nextOppositionJD), 180, 1) return marsRetrogradeAroundOpposition(followingOppositionJD, true) } func LastMarsProgradeToRetrograde(jde float64) float64 { nextOppositionJD := marsConjunctionFull(jde, 180, 1) date := marsRetrogradeAroundOpposition(nextOppositionJD, true) if sameEventUTQueryTT(date, jde) || eventUTQueryBeforeOrEqual(date, jde) { return date } lastOppositionJD := marsConjunctionFull(jde, 180, 0) return marsRetrogradeAroundOpposition(lastOppositionJD, true) }