clMatrix.ArcCsch Method

Overload List

#SignatureDescription
1function ArcCsch: TOpenCLMtxVec;Inverse hyperbolic cosecant.
└ indexed: function ArcCsch(Index: Integer; Len: Integer): TOpenCLMtxVec;
2function ArcCsch(const X: TOpenCLMtxVec): TOpenCLMtxVec;Calculate the inverse hyperbolic cosecant for all X object elements.
└ indexed: function ArcCsch(const X: TOpenCLMtxVec; XIndex: Integer; Index: Integer; Len: Integer): TOpenCLMtxVec;

Overload 1: function ArcCsch: TOpenCLMtxVec;

Inverse hyperbolic cosecant.

Result: stored in self (calling object), returns self for chaining

Remarks:

Calculate the inverse hyperbolic cosecant for all caling object elements in-place.

See Also: clMatrix.Csch

Indexed: function ArcCsch(Index: Integer; Len: Integer): TOpenCLMtxVec;

Calculate the inverse hyperbolic cosecant for calling object elements [Index]...[Index+Len-1] in-place.

#NameTypeDescription
1IndexIntegerstart index
2LenIntegerelement count

Result: stored in self (calling object), returns self for chaining

Remarks:

An exception is raised if array borders are overrun.

Overload 2: function ArcCsch(const X: TOpenCLMtxVec): TOpenCLMtxVec;

Calculate the inverse hyperbolic cosecant for all X object elements.

#NameTypeDescription
1XTOpenCLMtxVec

Result: stored in self (calling object), returns self for chaining

Remarks:

Store the results in calling object. Size and clMatrix.Complex properties of calling object are adjusted automatically.

Indexed: function ArcCsch(const X: TOpenCLMtxVec; XIndex: Integer; Index: Integer; Len: Integer): TOpenCLMtxVec;

Calculate the inverse hyperbolic cosecant for X object elements [XIndex]..[XIndex+Len-1].

#NameTypeDescription
1XTOpenCLMtxVec
2XIndexIntegerX start index
3IndexIntegerstart index
4LenIntegerelement count

Result: stored in self (calling object), returns self for chaining

Remarks:

The results are stored in calling object elements [Index]..[Index+Len-1]. Size and clMatrix.Complex properties of the calling object must be set explicitly. An exception is raised if array borders are overrun.