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			104 lines
		
	
	
		
			3.2 KiB
		
	
	
	
		
			Lua
		
	
	
	
	
	
			
		
		
	
	
			104 lines
		
	
	
		
			3.2 KiB
		
	
	
	
		
			Lua
		
	
	
	
	
	
| local function raycast_with_pointabilities(start_pos, end_pos, pointabilities)
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| 	local ray = core.raycast(start_pos, end_pos, nil, nil, pointabilities)
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| 	for hit in ray do
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| 		if hit.type == "node" then
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| 			return hit.under
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| 		end
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| 	end
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| 	return nil
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| end
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| 
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| local function test_raycast_pointabilities(player, pos1)
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| 	local pos2 = pos1:offset(0, 0, 1)
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| 	local pos3 = pos1:offset(0, 0, 2)
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| 
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| 	local oldnode1 = core.get_node(pos1)
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| 	local oldnode2 = core.get_node(pos2)
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| 	local oldnode3 = core.get_node(pos3)
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| 	core.swap_node(pos1, {name = "air"})
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| 	core.swap_node(pos2, {name = "testnodes:not_pointable"})
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| 	core.swap_node(pos3, {name = "testnodes:pointable"})
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| 
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| 	local p = nil
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| 	assert(raycast_with_pointabilities(pos1, pos3, p) == pos3)
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| 
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| 	p = core.registered_items["testtools:blocked_pointing_staff"].pointabilities
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| 	assert(raycast_with_pointabilities(pos1, pos3, p) == nil)
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| 
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| 	p = core.registered_items["testtools:ultimate_pointing_staff"].pointabilities
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| 	assert(raycast_with_pointabilities(pos1, pos3, p) == pos2)
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| 
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| 	core.swap_node(pos1, oldnode1)
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| 	core.swap_node(pos2, oldnode2)
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| 	core.swap_node(pos3, oldnode3)
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| end
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| 
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| unittests.register("test_raycast_pointabilities", test_raycast_pointabilities, {map=true})
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| 
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| local function test_raycast_noskip(_, pos)
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| 	local function random_point_in_area(min, max)
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| 		local extents = max - min
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| 		local v = extents:multiply(vector.new(
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| 			math.random(),
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| 			math.random(),
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| 			math.random()
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| 		))
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| 		return min + v
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| 	end
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| 
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| 	-- FIXME a variation of this unit test fails in an edge case.
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| 	-- This is because Luanti does not handle perfectly diagonal raycasts correctly:
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| 	-- Perfect diagonals collide with neither "outside" face and may thus "pierce" nodes.
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| 	-- Enable the following code to reproduce:
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| 	if 0 == 1 then
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| 		pos = vector.new(6, 32, -3)
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| 		math.randomseed(1596190898)
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| 		function random_point_in_area(min, max)
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| 			return min:combine(max, math.random)
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| 		end
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| 	end
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| 
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| 	local function cuboid_minmax(extent)
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| 		return pos:offset(-extent, -extent, -extent),
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| 				pos:offset(extent, extent, extent)
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| 	end
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| 
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| 	-- Carve out a 3x3x3 dirt cuboid in a larger air cuboid
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| 	local r = 8
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| 	local min, max = cuboid_minmax(r + 1)
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| 	local vm = core.get_voxel_manip(min, max)
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| 	local old_data = vm:get_data()
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| 	local data = vm:get_data()
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| 	local emin, emax = vm:get_emerged_area()
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| 	local va = VoxelArea:new({MinEdge = emin, MaxEdge = emax})
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| 	for index in va:iterp(min, max) do
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| 		data[index] = core.CONTENT_AIR
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| 	end
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| 	for index in va:iterp(cuboid_minmax(1)) do
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| 		data[index] = core.get_content_id("basenodes:dirt")
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| 	end
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| 	vm:set_data(data)
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| 	vm:write_to_map()
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| 
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| 	-- Raycast many times from outside the cuboid
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| 	for _ = 1, 100 do
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| 		local ray_start
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| 		repeat
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| 			ray_start = random_point_in_area(cuboid_minmax(r))
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| 		until not ray_start:in_area(cuboid_minmax(1.501))
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| 		-- Pick a random position inside the dirt
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| 		local ray_end = random_point_in_area(cuboid_minmax(1.499))
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| 		-- The first pointed thing should have only air "in front" of it,
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| 		-- or a dirt node got falsely skipped.
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| 		local pt = core.raycast(ray_start, ray_end, false, false):next()
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| 		if pt then
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| 			assert(core.get_node(pt.above).name == "air")
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| 		end
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| 	end
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| 
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| 	vm:set_data(old_data)
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| 	vm:write_to_map()
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| end
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| 
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| unittests.register("test_raycast_noskip", test_raycast_noskip, {map = true, random = true})
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