Numeric traits specialization for mi::Uint32.
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#include <types.h>
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static const bool | is_specialized = true |
| true for specialization. More...
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static const bool | has_infinity |
| Constant that is true if and only if T has an infinity representation. More...
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static const bool | has_quiet_NaN |
| Constant that is true if and only if T has a quiet NaN (not-a-number) representation. More...
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static const bool | has_signaling_NaN |
| Constant that is true if and only if T has a signaling NaN (not-a-number) representation. More...
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Numeric traits specialization for mi::Uint32.
◆ infinity()
Returns an infinity value for T
, if one exists, and T()
otherwise.
◆ min()
Returns the minimum finite value for T
(and for floating point types the minimum positive value).
The value is equivalent to standard C constants CHAR_MIN
, SHRT_MIN
, FLT_MIN
, DBL_MIN
, etc.
- Returns
- the minimum finite value for
T
.
◆ negative_max()
Returns the smallest finite negative value for T
.
For signed integer types this value is typically
(-"UINT_MAX.">max()-1). For unsigned integer types it is 0. For floating point types it is typically
(-"UINT_MAX.">max()).
- Returns
- the smallest finite negative value for
T
.
◆ quiet_NaN()
Returns a quiet NaN value for T
, if one exists, and T()
otherwise.
◆ signaling_NaN()
Returns a signaling NaN value for T
, if one exists, and T()
otherwise.
◆ has_infinity
Constant that is true
if and only if T
has an infinity representation.
You can get the infinity representation through the infinity()
method.
◆ has_quiet_NaN
Constant that is true
if and only if T
has a quiet NaN (not-a-number) representation.
You can get the quiet NaN representation through the quiet_NaN()
method.
◆ has_signaling_NaN
Constant that is true
if and only if T
has a signaling NaN (not-a-number) representation.
You can get the signaling NaN representation through the signaling_NaN()
method.