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Length: 1335 (0x537) Types: TextFile Names: »B«
└─⟦5f3412b64⟧ Bits:30000745 8mm tape, Rational 1000, ENVIRONMENT 12_6_5 TOOLS └─ ⟦91c658230⟧ »DATA« └─⟦458657fb6⟧ └─⟦1472c4407⟧ └─⟦this⟧ └─⟦d10a02448⟧ Bits:30000409 8mm tape, Rational 1000, ENVIRONMENT, D_12_7_3 └─ ⟦fc9b38f02⟧ »DATA« └─⟦9b46a407a⟧ └─⟦2e03b931c⟧ └─⟦this⟧
separate (Generic_Elementary_Functions) function Kf_Sincy (X, Cycle : Float_Type) return Float_Type is -- On input, X is a floating-point value in Float_Type; Cycle is a -- user specificed period. -- On output, the value of sin(X*2pi/Cycle) is returned. R, Y, Sign_Y, Z, User_Period, P_Lead, P_Trail, K : Common_Float; Zero : Common_Float := 0.0; I_Flag, Sc_Flag, Pm_Flag : Quadrant_Flag; Two_Pi : constant := 6.28318_53071_79586_47692_52867_66559_00576_8394; begin -- Argument reduction by "rem" Y := Common_Float (X); if (Y > 0.0) then Sign_Y := 1.0; else Sign_Y := -1.0; Y := abs (Y); end if; User_Period := Common_Float (Cycle); if User_Period <= 0.0 then raise Argument_Error; end if; R := Y rem User_Period; K := Round (4.0 * R / User_Period); I_Flag := Quadrant_Flag (Integer (K) mod 4); Sc_Flag := I_Flag mod 2; Pm_Flag := (I_Flag - Sc_Flag) / 2; P_Lead := Leading_Part (User_Period, 4); P_Trail := User_Period - P_Lead; K := K * 0.25; R := (R - K * P_Lead) - K * P_Trail; R := (R / User_Period) * Two_Pi; if (Sc_Flag = 0) then Z := Kf_Sin (R, Zero); else Z := Kf_Cos (R, Zero); end if; if (Pm_Flag = 1) then Z := -Z; end if; return (Float_Type (Sign_Y * Z)); end Kf_Sincy;