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				| 
		 After Width: | Height: | Size: 590 KiB  | 
@ -0,0 +1,52 @@ | 
				
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local unpack = table.unpack or _G.unpack | 
				
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math.randomseed(os.time()) | 
				
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 | 
				
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local function randab(a, b) | 
				
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    return math.random() * (b-a) + a | 
				
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end | 
				
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 | 
				
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local function randtable(n, a, b) | 
				
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    local t = {} | 
				
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    for i=1, n do | 
				
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        t[i] = randab(a, b) | 
				
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    end | 
				
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    return t | 
				
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end | 
				
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 | 
				
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local function choice(list) | 
				
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    return list[math.random(1, #list)] | 
				
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end | 
				
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 | 
				
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local function randomsphere() | 
				
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    local pos = vec3.new(unpack(randtable(3, -2, 2))) | 
				
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    local radius = randab(0, 0.5) | 
				
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	local emission = colorvec.new(unpack(randtable(4, 0, 1))) | 
				
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    local reflection = colormat.new(unpack(randtable(16, 0, 1))) | 
				
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    local surfacetype = choice({surfacetype.DIFFUSE, surfacetype.REFLECTIVE, surfacetype.STOP}) | 
				
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 | 
				
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    return obj.withmaterial( | 
				
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        obj.sphere(pos, radius), | 
				
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        material.new(emission, reflection, surfacetype) | 
				
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    ) | 
				
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end | 
				
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 | 
				
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local function union(objs) | 
				
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    local n = #objs | 
				
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    if n == 1 then return objs[1] end | 
				
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 | 
				
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    local mid = n//2 | 
				
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    local left, right = {}, {} | 
				
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    for i=1, mid do | 
				
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        left[i] = objs[i] | 
				
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    end | 
				
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    for i=mid+1, n do | 
				
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        right[i-mid] = objs[i] | 
				
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    end | 
				
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	return obj.union(union(left), union(right)) | 
				
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end | 
				
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 | 
				
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local spheres = {} | 
				
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for i=1, 100 do | 
				
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    spheres[i] = randomsphere() | 
				
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end | 
				
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return union(spheres) | 
				
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@ -0,0 +1,47 @@ | 
				
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use crate::structs::{ColorVec, ColorMat}; | 
				
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use rlua::{UserData, Context, Table}; | 
				
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 | 
				
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impl UserData for ColorVec {} | 
				
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impl UserData for ColorMat {} | 
				
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 | 
				
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pub fn color_vec(ctx: Context, _: ()) -> rlua::Result<Table> { | 
				
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    let module = ctx.create_table()?; | 
				
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 | 
				
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    module.set("new", ctx.create_function( | 
				
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        |ctx, (r, g, b, u)| Ok(ColorVec::new([r, g, b, u])) | 
				
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    )?)?; | 
				
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 | 
				
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    module.set("ZERO", ColorVec::new_zero())?; | 
				
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 | 
				
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    Ok(module) | 
				
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} | 
				
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 | 
				
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pub fn color_mat(ctx: Context, _: ()) -> rlua::Result<Table> { | 
				
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    let module = ctx.create_table()?; | 
				
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 | 
				
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    module.set("new", ctx.create_function( | 
				
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        |ctx, ( | 
				
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            a, b, c, d, | 
				
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            e, f, g, h, | 
				
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            i, j, k, l, | 
				
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            m, n, o, p | 
				
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        )| Ok(ColorMat::new([ | 
				
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            [a, b, c, d], | 
				
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            [e, f, g, h], | 
				
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            [i, j, k, l], | 
				
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            [m, n, o, p] | 
				
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        ])) | 
				
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    )?)?; | 
				
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 | 
				
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    module.set("newfromvec", ctx.create_function( | 
				
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        |ctx, vec: ColorVec| Ok(ColorMat::new_from_diagonal(vec)) | 
				
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    )?)?; | 
				
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 | 
				
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    module.set("newfromdiagonal", ctx.create_function( | 
				
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        |ctx, (r, g, b, u)| Ok(ColorMat::new_from_diagonal(ColorVec::new([r, g, b, u]))) | 
				
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    )?)?; | 
				
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 | 
				
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    module.set("ZERO", ColorMat::new_zero())?; | 
				
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 | 
				
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    Ok(module) | 
				
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} | 
				
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@ -0,0 +1,14 @@ | 
				
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use crate::light::Light; | 
				
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use rlua::{UserData, Context, Table}; | 
				
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 | 
				
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impl UserData for Light {} | 
				
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 | 
				
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pub fn light(ctx: Context, _: ()) -> rlua::Result<Table> { | 
				
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    let module = ctx.create_table()?; | 
				
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 | 
				
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    module.set("new", ctx.create_function( | 
				
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        |ctx, (pos, color)| Ok(Light::new(pos, color)) | 
				
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    )?)?; | 
				
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 | 
				
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    Ok(module) | 
				
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} | 
				
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@ -0,0 +1,43 @@ | 
				
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use crate::structs::{Mat3, I3, O3}; | 
				
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use rlua::{UserData, UserDataMethods, Context, MetaMethod, Table}; | 
				
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 | 
				
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impl UserData for Mat3 { | 
				
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    fn add_methods<'lua, T: UserDataMethods<'lua, Self>>(methods: &mut T) { | 
				
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        methods.add_meta_method(MetaMethod::Add, |ctx, a: &Self, b: Self| Ok(*a+b)); | 
				
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        methods.add_meta_method(MetaMethod::Sub, |ctx, a: &Self, b: Self| Ok(*a-b)); | 
				
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        methods.add_meta_method(MetaMethod::Mul, |ctx, a: &Self, b: Self| Ok(*a*b)); | 
				
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        methods.add_meta_method(MetaMethod::Unm, |ctx, a: &Self, b: ()| Ok(-*a)); | 
				
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        methods.add_meta_method(MetaMethod::Mul, |ctx, a: &Self, b: f64| Ok(*a*b)); | 
				
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        methods.add_meta_method(MetaMethod::Div, |ctx, a: &Self, b: f64| Ok(*a/b)); | 
				
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 | 
				
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        methods.add_method("a", |ctx, x, ()| Ok(x.a())); | 
				
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        methods.add_method("b", |ctx, x, ()| Ok(x.b())); | 
				
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        methods.add_method("c", |ctx, x, ()| Ok(x.c())); | 
				
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        methods.add_method("d", |ctx, x, ()| Ok(x.d())); | 
				
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        methods.add_method("e", |ctx, x, ()| Ok(x.e())); | 
				
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        methods.add_method("f", |ctx, x, ()| Ok(x.f())); | 
				
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        methods.add_method("g", |ctx, x, ()| Ok(x.g())); | 
				
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        methods.add_method("h", |ctx, x, ()| Ok(x.h())); | 
				
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        methods.add_method("i", |ctx, x, ()| Ok(x.i())); | 
				
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 | 
				
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        methods.add_method("det", |ctx, x, ()| Ok(x.det())); | 
				
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        methods.add_method("trans",|ctx, x, ()| Ok(x.trans())); | 
				
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        methods.add_method("minor", |ctx, x, ()| Ok(x.minor())); | 
				
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        methods.add_method("invert", |ctx, x, ()| Ok(x.invert())); | 
				
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 | 
				
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        methods.add_method("membermul", |ctx, x, y| Ok(x.member_mul(y))); | 
				
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    } | 
				
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} | 
				
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 | 
				
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pub fn mat3(ctx: Context, _: ()) -> rlua::Result<Table> { | 
				
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    let module = ctx.create_table()?; | 
				
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 | 
				
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    module.set("new", ctx.create_function( | 
				
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        |ctx, (a, b, c, d, e, f, g, h, i)| Ok(Mat3::new(a, b, c, d, e, f, g, h, i)) | 
				
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    )?)?; | 
				
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 | 
				
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    module.set("I", I3)?; | 
				
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    module.set("O", O3)?; | 
				
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 | 
				
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    Ok(module) | 
				
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} | 
				
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@ -0,0 +1,30 @@ | 
				
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use crate::material::{SurfaceType, Material}; | 
				
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use rlua::{UserData, Context, Table}; | 
				
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 | 
				
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impl UserData for SurfaceType {} | 
				
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impl UserData for Material {} | 
				
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 | 
				
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pub fn surface_type(ctx: Context, _: ()) -> rlua::Result<Table> { | 
				
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    let module = ctx.create_table()?; | 
				
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 | 
				
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    module.set("DIFFUSE", SurfaceType::Diffuse)?; | 
				
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    module.set("REFLECTIVE", SurfaceType::Reflective)?; | 
				
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    module.set("STOP", SurfaceType::Stop)?; | 
				
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 | 
				
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    Ok(module) | 
				
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} | 
				
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 | 
				
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pub fn material(ctx: Context, _: ()) -> rlua::Result<Table> { | 
				
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    let module = ctx.create_table()?; | 
				
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 | 
				
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    module.set("new", ctx.create_function( | 
				
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        |ctx, (emission, reflection, surface)| Ok(Material::new(emission, reflection, surface)) | 
				
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    )?)?; | 
				
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 | 
				
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    module.set("newfromdiagonal", ctx.create_function( | 
				
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        |ctx, (emission, reflection, surface)| Ok(Material::new_from_diagonal(emission, reflection, surface)) | 
				
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    )?)?; | 
				
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 | 
				
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    Ok(module) | 
				
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} | 
				
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 | 
				
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@ -0,0 +1,43 @@ | 
				
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use rlua::{Context, Table, Lua, Function}; | 
				
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 | 
				
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mod obj; | 
				
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mod vec3; | 
				
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mod mat3; | 
				
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mod color; | 
				
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mod material; | 
				
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mod light; | 
				
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 | 
				
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pub use obj::{LuaObject, obj}; | 
				
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pub use vec3::vec3; | 
				
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pub use mat3::mat3; | 
				
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pub use color::{color_vec, color_mat}; | 
				
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pub use material::{surface_type, material}; | 
				
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pub use light::light; | 
				
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 | 
				
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pub fn env(ctx: Context, _: ()) -> rlua::Result<Table> { | 
				
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    let module = ctx.create_table()?; | 
				
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 | 
				
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    module.set("obj", obj(ctx, ())?)?; | 
				
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    module.set("vec3", vec3(ctx, ())?)?; | 
				
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    module.set("mat3", mat3(ctx, ())?)?; | 
				
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    module.set("colorvec", color_vec(ctx, ())?)?; | 
				
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    module.set("colormat", color_mat(ctx, ())?)?; | 
				
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    module.set("surfacetype", surface_type(ctx, ())?)?; | 
				
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    module.set("material", material(ctx, ())?)?; | 
				
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    module.set("light", light(ctx, ())?)?; | 
				
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 | 
				
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    Ok(module) | 
				
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} | 
				
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 | 
				
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pub fn scene_from_file(file: String) -> rlua::Result<LuaObject> { | 
				
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    Lua::new().context(|ctx| { | 
				
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        let env = env(ctx, ())?; | 
				
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        let meta = ctx.create_table()?; | 
				
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        meta.set("__index", ctx.globals())?; | 
				
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        env.set_metatable(Some(meta)); | 
				
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 | 
				
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        let loadfile: Function = ctx.globals().get("loadfile")?; | 
				
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        let chunk: Function = loadfile.call((file, "t", env))?; | 
				
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        ctx.unpack(chunk.call(())?) | 
				
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    }) | 
				
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} | 
				
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@ -0,0 +1,84 @@ | 
				
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use crate::object::*; | 
				
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use crate::structs::{Vec3, Mat3}; | 
				
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use std::sync::Arc; | 
				
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use crate::material::Material; | 
				
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use crate::light::Light; | 
				
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use rlua::{UserData, Context, Table}; | 
				
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 | 
				
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#[derive(Clone)] | 
				
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pub struct LuaObject(Arc<Scene>); | 
				
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 | 
				
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impl LuaObject { | 
				
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    fn new<T: 'static + Obj + Clone>(obj: T) -> rlua::Result<LuaObject> { | 
				
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        Ok(LuaObject(Arc::new(Scene::new(obj)))) | 
				
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    } | 
				
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    fn get(self) -> Scene { | 
				
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        (*self.0).clone() | 
				
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    } | 
				
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} | 
				
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 | 
				
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impl Obj for LuaObject { | 
				
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    fn distance_to(&self, point: Vec3) -> f64 { self.0.distance_to(point) } | 
				
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    fn normal_at(&self, point: Vec3) -> Vec3 { self.0.normal_at(point) } | 
				
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    fn material_at(&self, point: Vec3) -> Material { self.0.material_at(point) } | 
				
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    fn get_lights(&self) -> Vec<Light> { self.0.get_lights() } | 
				
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    fn node_count(&self) -> u32 { 1 + self.0.node_count() } | 
				
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} | 
				
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 | 
				
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impl UserData for LuaObject {} | 
				
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 | 
				
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pub fn obj(ctx: Context, _: ()) -> rlua::Result<Table> { | 
				
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    let module = ctx.create_table()?; | 
				
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 | 
				
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    module.set("cuboid", ctx.create_function( | 
				
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        |ctx, (pos, radius): (Vec3, Vec3)| LuaObject::new(Cuboid::new(pos, radius)) | 
				
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    )?)?; | 
				
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 | 
				
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    module.set("cylinder", ctx.create_function( | 
				
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        |ctx, (pos, radius): (Vec3, f64)| LuaObject::new(Cylinder::new(pos, radius)) | 
				
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    )?)?; | 
				
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 | 
				
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    module.set("exclusion", ctx.create_function( | 
				
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        |ctx, (a, b): (LuaObject, LuaObject)| LuaObject::new(Exclusion::new(a.get(), b.get())) | 
				
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    )?)?; | 
				
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 | 
				
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    module.set("intersection", ctx.create_function( | 
				
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        |ctx, (a, b): (LuaObject, LuaObject)| LuaObject::new(Intersection::new(a.get(), b.get())) | 
				
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    )?)?; | 
				
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 | 
				
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    module.set("plane", ctx.create_function( | 
				
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        |ctx, (normal, offset): (Vec3, f64)| LuaObject::new(Plane::new(normal, offset)) | 
				
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    )?)?; | 
				
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 | 
				
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    module.set("sphere", ctx.create_function( | 
				
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        |ctx, (pos, radius): (Vec3, f64)| LuaObject::new(Sphere::new(pos, radius)) | 
				
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    )?)?; | 
				
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 | 
				
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    module.set("torus", ctx.create_function( | 
				
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        |ctx, (center, radius, thickness): (Vec3, f64, f64)| LuaObject::new(Torus::new(center, radius, thickness)) | 
				
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    )?)?; | 
				
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 | 
				
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    module.set("affinetransform", ctx.create_function( | 
				
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        |ctx, (obj, trans, disp): (LuaObject, Mat3, Vec3)| LuaObject::new(AffineTransform::new(obj.get(), trans, disp)) | 
				
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    )?)?; | 
				
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 | 
				
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    module.set("union", ctx.create_function( | 
				
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        |ctx, (a, b): (LuaObject, LuaObject)| LuaObject::new(Union::new(a.get(), b.get())) | 
				
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    )?)?; | 
				
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 | 
				
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    module.set("waves", ctx.create_function( | 
				
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        |ctx, ()| LuaObject::new(Waves::new()) | 
				
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    )?)?; | 
				
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 | 
				
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    module.set("withlights", ctx.create_function( | 
				
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        |ctx, (obj, light): (LuaObject, Light)| LuaObject::new(WithLights::new_one(obj.get(), light)) | 
				
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    )?)?; | 
				
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 | 
				
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    module.set("withmaterial", ctx.create_function( | 
				
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        |ctx, (obj, material): (LuaObject, Material)| LuaObject::new(WithMaterial::new(obj.get(), material)) | 
				
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    )?)?; | 
				
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 | 
				
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    //TODO add the rest of the objects
 | 
				
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 | 
				
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    Ok(module) | 
				
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} | 
				
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@ -0,0 +1,40 @@ | 
				
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use crate::structs::{Vec3, X, Y, Z, O}; | 
				
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use rlua::{UserData, UserDataMethods, MetaMethod, Context, Table}; | 
				
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 | 
				
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impl UserData for Vec3 { | 
				
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    fn add_methods<'lua, T: UserDataMethods<'lua, Self>>(methods: &mut T) { | 
				
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        methods.add_meta_method(MetaMethod::Add, |ctx, a: &Self, b: Self| Ok(*a+b)); | 
				
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        methods.add_meta_method(MetaMethod::Sub, |ctx, a: &Self, b: Self| Ok(*a-b)); | 
				
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        methods.add_meta_method(MetaMethod::Mul, |ctx, a: &Self, b: Self| Ok(*a*b)); | 
				
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        methods.add_meta_method(MetaMethod::Pow, |ctx, a: &Self, b: Self| Ok(*a^b)); | 
				
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        methods.add_meta_method(MetaMethod::Unm, |ctx, a: &Self, b: ()| Ok(-*a)); | 
				
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        methods.add_meta_method(MetaMethod::Mul, |ctx, a: &Self, b: f64| Ok(*a*b)); | 
				
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        methods.add_meta_method(MetaMethod::Div, |ctx, a: &Self, b: f64| Ok(*a/b)); | 
				
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 | 
				
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        methods.add_method("x", |ctx, x, ()| Ok(x.x())); | 
				
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        methods.add_method("y", |ctx, x, ()| Ok(x.y())); | 
				
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        methods.add_method("z", |ctx, x, ()| Ok(x.z())); | 
				
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 | 
				
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        methods.add_method("magnitude", |ctx, x, ()| Ok(x.magnitude())); | 
				
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        methods.add_method("unit", |ctx, x, ()| Ok(x.unit())); | 
				
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 | 
				
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        methods.add_method("distanceto", |ctx, x, y| Ok(x.distance_to(y))); | 
				
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        methods.add_method("angleto", |ctx, x, y| Ok(x.angle_to(y))); | 
				
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        methods.add_method("membermul", |ctx, x, y| Ok(x.member_mul(y))); | 
				
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    } | 
				
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} | 
				
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 | 
				
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pub fn vec3(ctx: Context, _: ()) -> rlua::Result<Table> { | 
				
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    let module = ctx.create_table()?; | 
				
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 | 
				
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    module.set("new", ctx.create_function( | 
				
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        |ctx, (x, y, z)| Ok(Vec3::new(x, y, z)) | 
				
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    )?)?; | 
				
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 | 
				
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    module.set("X", X)?; | 
				
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    module.set("Y", Y)?; | 
				
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    module.set("Z", Z)?; | 
				
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    module.set("O", O)?; | 
				
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 | 
				
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    Ok(module) | 
				
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} | 
				
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