Native floating point type, corresponding to the IEEE 754 binary32 format
(float in C or f32 in Rust).
- val : float32Spec.float
Instances For
Equations
- a.lt b = match a, b with | { val := a }, { val := b } => float32Spec.lt a b
Instances For
Equations
- a.le b = float32Spec.le a.val b.val
Instances For
Raw transmutation from UInt32.
Float32s and UInts have the same endianness on all supported platforms. IEEE 754 very precisely specifies the bit layout of floats.
Raw transmutation to UInt32.
Float32s and UInts have the same endianness on all supported platforms. IEEE 754 very precisely specifies the bit layout of floats.
Note that this function is distinct from Float32.toUInt32, which attempts
to preserve the numeric value, and not the bitwise value.
Note: this is not reflexive since NaN != NaN.
If the given float is non-negative, truncates the value to the nearest non-negative integer.
If negative or NaN, returns 0.
If larger than the maximum value for UInt8 (including Inf), returns the maximum value of UInt8
(i.e. UInt8.size - 1).
If the given float is non-negative, truncates the value to the nearest non-negative integer.
If negative or NaN, returns 0.
If larger than the maximum value for UInt16 (including Inf), returns the maximum value of UInt16
(i.e. UInt16.size - 1).
If the given float is non-negative, truncates the value to the nearest non-negative integer.
If negative or NaN, returns 0.
If larger than the maximum value for UInt32 (including Inf), returns the maximum value of UInt32
(i.e. UInt32.size - 1).
If the given float is non-negative, truncates the value to the nearest non-negative integer.
If negative or NaN, returns 0.
If larger than the maximum value for UInt64 (including Inf), returns the maximum value of UInt64
(i.e. UInt64.size - 1).
If the given float is non-negative, truncates the value to the nearest non-negative integer.
If negative or NaN, returns 0.
If larger than the maximum value for USize (including Inf), returns the maximum value of USize
(i.e. USize.size - 1). This value is platform dependent).
Equations
- instToStringFloat32 = { toString := Float32.toString }
Equations
- instInhabitedFloat32 = { default := UInt64.toFloat32 0 }
Equations
- One or more equations did not get rendered due to their size.
Equations
- instHomogeneousPowFloat32 = { pow := Float32.pow }
Efficiently computes x * 2^i.