Merge pull request #74 from lilkeet/master
Fix angle proc for 2D vectors
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535a45b57c
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@ -1573,15 +1573,15 @@ proc angle*[T](a: GVec2[T]): T =
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## Angle of a Vec2.
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arctan2(a.y, a.x)
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proc angle*[T](a, b: GVec2[T]): T =
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## Angle between 2 Vec2.
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fixAngle(arctan2(a.y - b.y, a.x - b.x))
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proc angle*[T](a, b: GVec3[T]): T =
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## Angle between 2 Vec3.
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proc angle*[T; S: GVec2[T]|GVec3[T]](a, b: S): T =
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## Angle between 2 Vec2 or Vec3.
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var dot = dot(a, b)
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dot = dot / (a.length * b.length)
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arccos(dot)
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# The cases of angle((1, 1), (-1, -1)) and its 3d counterpart
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# angle((1, 1, 1), (-1, -1, -1)) result in NaN due to a domain defect going
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# into the arcos proc: abs(x) > 1.0.
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# Therefore, we must `clamp` here.
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arccos(dot.clamp(-1.0, 1.0))
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type
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Quat* = GVec4[float32]
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@ -1155,4 +1155,34 @@ block:
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else:
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doAssert abs(angleBetween(a.y, b.y - b.z)) < 0.001
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block:
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# Test for https://github.com/treeform/vmath/issues/73
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template gen2DTestsFor(constructor: untyped): void =
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doAssert angle(constructor(1, 0), constructor(1, 0)) ~= 0
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doAssert angle(constructor(1, 1), constructor(-1, -1)) ~= Pi
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doAssert angle(constructor(1, 0), constructor(0, 1)) ~= Pi/2
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doAssert angle(constructor(1, 0), constructor(-1, 0)) ~= Pi
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doAssert angle(constructor(1, 1), constructor(1, -1)) ~= Pi/2
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# Edge cases:
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doAssert angle(constructor(0, 0), constructor(1, 0)).isNaN()
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gen2DTestsFor vec2
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gen2DTestsFor dvec2
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template gen3DTestsFor(constructor: untyped): void =
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doAssert angle(constructor(1, 0, 0), constructor(1, 0, 0)) ~= 0
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doAssert angle(constructor(1, 1, 1), constructor(-1, -1, -1)) ~= Pi
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doAssert angle(constructor(1, 0, 0), constructor(0, 1, 0)) ~= Pi/2
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doAssert angle(constructor(1, 0, 0), constructor(-1, 0, 0)) ~= Pi
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doAssert angle(constructor(1, 1, 1), constructor(1, -1, 1)) ~= arccos(1/3)
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doAssert angle(constructor(1, 0, 0), constructor(0, 0, 1)) ~= Pi/2
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doAssert angle(constructor(1, 1, 1), constructor(-1, -1, 1)) ~= arccos(-1/3)
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# Edge cases:
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doAssert angle(vec3(0, 0, 0), vec3(1, 0, 0)).isNaN()
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gen3DTestsFor vec3
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gen3DTestsFor dvec3
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echo "test finished successfully"
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