[#BloombergLP-bdldfp-DecimalImpUtil-negate-04] = xref:BloombergLP.adoc[BloombergLP]::xref:BloombergLP/bdldfp.adoc[bdldfp]::xref:BloombergLP/bdldfp/DecimalImpUtil.adoc[DecimalImpUtil]::negate :relfileprefix: ../../../ :mrdocs: `negate` overloads == Synopses Declared in `<bdldfp_decimalimputil.h>` Return the negation of the specified `value`. [source,cpp,subs="verbatim,replacements,macros,-callouts"] ---- static xref:BloombergLP/bdldfp/DecimalImpUtil/ValueType128.adoc[DecimalImpUtil::ValueType128] xref:BloombergLP/bdldfp/DecimalImpUtil/negate-0b.adoc[negate](xref:BloombergLP/bdldfp/DecimalImpUtil/ValueType128.adoc[ValueType128] value); ---- [.small]#xref:BloombergLP/bdldfp/DecimalImpUtil/negate-0b.adoc[_» more..._]# Return the result of applying the unary negation (`‐`) operator to the specified `value` as described by IEEE‐754. Note that decimal floating point representations can encode signed zero values, thus negating 0 results in ‐0 and negating ‐0 results in 0. [source,cpp,subs="verbatim,replacements,macros,-callouts"] ---- static xref:BloombergLP/bdldfp/DecimalImpUtil/ValueType32.adoc[DecimalImpUtil::ValueType32] xref:BloombergLP/bdldfp/DecimalImpUtil/negate-02.adoc[negate](xref:BloombergLP/bdldfp/DecimalImpUtil/ValueType32.adoc[ValueType32] value); ---- [.small]#xref:BloombergLP/bdldfp/DecimalImpUtil/negate-02.adoc[_» more..._]# Return the negation of the specified `value`. [source,cpp,subs="verbatim,replacements,macros,-callouts"] ---- static xref:BloombergLP/bdldfp/DecimalImpUtil/ValueType64.adoc[DecimalImpUtil::ValueType64] xref:BloombergLP/bdldfp/DecimalImpUtil/negate-0c.adoc[negate](xref:BloombergLP/bdldfp/DecimalImpUtil/ValueType64.adoc[ValueType64] value); ---- [.small]#xref:BloombergLP/bdldfp/DecimalImpUtil/negate-0c.adoc[_» more..._]# [.small]#Created with https://www.mrdocs.com[MrDocs]#