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Add vector.combine (#11920)
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@ -128,6 +128,14 @@ describe("vector", function()
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assert.equal(vector.new(4.1, 5.9, 5.5), a:apply(f))
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end)
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it("combine()", function()
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local a = vector.new(1, 2, 3)
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local b = vector.new(3, 2, 1)
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assert.equal(vector.add(a, b), vector.combine(a, b, function(x, y) return x + y end))
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assert.equal(vector.new(3, 2, 3), vector.combine(a, b, math.max))
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assert.equal(vector.new(1, 2, 1), vector.combine(a, b, math.min))
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end)
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it("equals()", function()
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local function assertE(a, b)
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assert.is_true(vector.equals(a, b))
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@ -110,6 +110,14 @@ function vector.apply(v, func)
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)
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end
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function vector.combine(a, b, func)
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return fast_new(
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func(a.x, b.x),
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func(a.y, b.y),
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func(a.z, b.z)
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)
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end
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function vector.distance(a, b)
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local x = a.x - b.x
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local y = a.y - b.y
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@ -580,6 +580,7 @@ Spatial Vectors
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* `vector.floor(v)`: returns a vector, each dimension rounded down
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* `vector.round(v)`: returns a vector, each dimension rounded to nearest int
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* `vector.apply(v, func)`: returns a vector
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* `vector.combine(v, w, func)`: returns a vector
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* `vector.equals(v1, v2)`: returns a boolean
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For the following functions `x` can be either a vector or a number:
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@ -3409,6 +3409,9 @@ vectors are written like this: `(x, y, z)`:
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* `vector.apply(v, func)`:
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* Returns a vector where the function `func` has been applied to each
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component.
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* `vector.combine(v, w, func)`:
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* Returns a vector where the function `func` has combined both components of `v` and `w`
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for each component
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* `vector.equals(v1, v2)`:
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* Returns a boolean, `true` if the vectors are identical.
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* `vector.sort(v1, v2)`:
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