| Package | Description |
|---|---|
| com.io7m.jtensors.core.parameterized.matrices |
Parameterized matrix types.
|
| com.io7m.jtensors.core.parameterized.vectors |
Parameterized vector types.
|
| com.io7m.jtensors.generators |
QuickCheck generators.
|
| com.io7m.jtensors.storage.api.parameterized.vectors |
Parameterized vector storage types.
|
| Modifier and Type | Method and Description |
|---|---|
static <A,B> PVector3F<B> |
PMatrices3x3F.multiplyVectorPost(PMatrix3x3F<A,B> m,
PVector3F<A> v)
Multiply the vector
v by the matrix m. |
| Modifier and Type | Method and Description |
|---|---|
static <A,B> PVector3F<B> |
PMatrices3x3F.multiplyVectorPost(PMatrix3x3F<A,B> m,
PVector3F<A> v)
Multiply the vector
v by the matrix m. |
| Modifier and Type | Method and Description |
|---|---|
static <T> PVector3F<T> |
PVectors3F.absolute(PVector3F<T> v0)
Calculate the absolute of
v0. |
static <T> PVector3F<T> |
PVectors3F.add(PVector3F<T> v0,
PVector3F<T> v1)
Add
v0 to v1. |
static <T> PVector3F<T> |
PVectors3F.addScaled(PVector3F<T> v0,
PVector3F<T> v1,
double r)
Add
v0 to v1 * r. |
PVector3F<T> |
PVector3F.Builder.build()
Builds a new
PVector3F. |
static <T> PVector3F<T> |
PVectors3F.clamp(PVector3F<T> v,
PVector3F<T> v_min,
PVector3F<T> v_max)
Clamp the values in
v by v_min and v_max. |
static <T> PVector3F<T> |
PVectors3F.crossProduct(PVector3F<T> v0,
PVector3F<T> v1)
Calculate the cross product of the vectors
v0 and v1. |
static <T> PVector3F<T> |
PVectors3F.interpolateLinear(PVector3F<T> v0,
PVector3F<T> v1,
double alpha)
Linearly interpolate between
v0 and v1 by the amount alpha. |
static <T> PVector3F<T> |
PVectors3F.negate(PVector3F<T> v)
Calculate the negation of
v. |
static <T> PVector3F<T> |
PVectors3F.normalize(PVector3F<T> v0)
Normalize the vector
v0. |
static <T> PVector3F<T> |
PVector3F.of(float x,
float y,
float z)
Construct a new immutable
PVector3F instance. |
static <T> PVector3F<T> |
PVectors3F.scale(PVector3F<T> v0,
double r)
Scale
v0 by r. |
static <T> PVector3F<T> |
PVectors3F.subtract(PVector3F<T> v0,
PVector3F<T> v1)
Subtract
v1 from v0. |
static <T> PVector3F<T> |
PVectors3F.zero()
The zero vector.
|
| Modifier and Type | Method and Description |
|---|---|
static <T> PVector3F<T> |
PVectors3F.absolute(PVector3F<T> v0)
Calculate the absolute of
v0. |
static <T> PVector3F<T> |
PVectors3F.add(PVector3F<T> v0,
PVector3F<T> v1)
Add
v0 to v1. |
static <T> PVector3F<T> |
PVectors3F.add(PVector3F<T> v0,
PVector3F<T> v1)
Add
v0 to v1. |
static <T> PVector3F<T> |
PVectors3F.addScaled(PVector3F<T> v0,
PVector3F<T> v1,
double r)
Add
v0 to v1 * r. |
static <T> PVector3F<T> |
PVectors3F.addScaled(PVector3F<T> v0,
PVector3F<T> v1,
double r)
Add
v0 to v1 * r. |
static <T> PVector3F<T> |
PVectors3F.clamp(PVector3F<T> v,
PVector3F<T> v_min,
PVector3F<T> v_max)
Clamp the values in
v by v_min and v_max. |
static <T> PVector3F<T> |
PVectors3F.clamp(PVector3F<T> v,
PVector3F<T> v_min,
PVector3F<T> v_max)
Clamp the values in
v by v_min and v_max. |
static <T> PVector3F<T> |
PVectors3F.clamp(PVector3F<T> v,
PVector3F<T> v_min,
PVector3F<T> v_max)
Clamp the values in
v by v_min and v_max. |
static <T> PVector3F<T> |
PVectors3F.crossProduct(PVector3F<T> v0,
PVector3F<T> v1)
Calculate the cross product of the vectors
v0 and v1. |
static <T> PVector3F<T> |
PVectors3F.crossProduct(PVector3F<T> v0,
PVector3F<T> v1)
Calculate the cross product of the vectors
v0 and v1. |
static <T> double |
PVectors3F.dotProduct(PVector3F<T> v0,
PVector3F<T> v1)
Calculate the scalar product of the vectors
v0 and v1. |
static <T> double |
PVectors3F.dotProduct(PVector3F<T> v0,
PVector3F<T> v1)
Calculate the scalar product of the vectors
v0 and v1. |
static <T> PVector3F<T> |
PVectors3F.interpolateLinear(PVector3F<T> v0,
PVector3F<T> v1,
double alpha)
Linearly interpolate between
v0 and v1 by the amount alpha. |
static <T> PVector3F<T> |
PVectors3F.interpolateLinear(PVector3F<T> v0,
PVector3F<T> v1,
double alpha)
Linearly interpolate between
v0 and v1 by the amount alpha. |
static <T> double |
PVectors3F.magnitude(PVector3F<T> v0)
Calculate the magnitude of the vector
v0. |
static <T> double |
PVectors3F.magnitudeSquared(PVector3F<T> v0)
Calculate the squared magnitude of the vector
v0. |
static <T> PVector3F<T> |
PVectors3F.negate(PVector3F<T> v)
Calculate the negation of
v. |
static <T> PVector3F<T> |
PVectors3F.normalize(PVector3F<T> v0)
Normalize the vector
v0. |
static <T> PVector3F<T> |
PVectors3F.scale(PVector3F<T> v0,
double r)
Scale
v0 by r. |
static <T> PVector3F<T> |
PVectors3F.subtract(PVector3F<T> v0,
PVector3F<T> v1)
Subtract
v1 from v0. |
static <T> PVector3F<T> |
PVectors3F.subtract(PVector3F<T> v0,
PVector3F<T> v1)
Subtract
v1 from v0. |
| Modifier and Type | Method and Description |
|---|---|
PVector3F<T> |
PVector3FGenerator.next() |
| Modifier and Type | Method and Description |
|---|---|
static <T> net.java.quickcheck.Generator<PVector3F<T>> |
PVector3FGenerator.create()
Create a generator initialized with a default component generator.
|
static <T> net.java.quickcheck.Generator<PVector3F<T>> |
PVector3FGenerator.createNormal()
Create a generator initialized with a default component generator that
produces values in the range
[-1.0, 1.0]. |
static <T> net.java.quickcheck.Generator<PVector3F<T>> |
PVector3FGenerator.createSmall()
Create a generator initialized with a default component generator that
produces values in the range
[-65536.0, 65536.0]. |
| Modifier and Type | Method and Description |
|---|---|
default void |
PVectorStorageFloating3Type.setPVector3F(PVector3F<T> v)
Set the components from the given vector.
|
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