forked from Mirrorlandia_minetest/mesecons
Optimize light updates when turning conductors on and off (#578)
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@ -368,11 +368,66 @@ function mesecon.is_power_off(pos, rulename)
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return false
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end
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-- The set of conductor states which require light updates when they change.
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local light_update_conductors
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-- Calculate the contents of the above set if they have not been calculated.
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-- This must be called before get_update_light_conductor.
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local function find_light_update_conductors()
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-- The expensive calculation is only done the first time.
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if light_update_conductors then return end
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light_update_conductors = {}
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-- Find conductors whose lighting characteristics change depending on their state.
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local checked = {}
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for name, def in pairs(minetest.registered_nodes) do
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local conductor = mesecon.get_conductor(name)
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if conductor and not checked[name] then
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-- Find the other states of the conductor besides the current one.
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local other_states
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if conductor.onstate then
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other_states = {conductor.onstate}
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elseif conductor.offstate then
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other_states = {conductor.offstate}
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else
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other_states = conductor.states
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end
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-- Check the conductor. Other states are marked as checked.
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for _, other_state in ipairs(other_states) do
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local other_def = minetest.registered_nodes[other_state]
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if (def.paramtype == "light") ~= (other_def.paramtype == "light")
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or def.sunlight_propagates ~= other_def.sunlight_propagates
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or def.light_source ~= other_def.light_source then
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-- The light characteristics change depending on the state.
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-- The states are added to the set.
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light_update_conductors[name] = true
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for _, other_state in ipairs(other_states) do
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light_update_conductors[other_state] = true
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checked[other_state] = true
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end
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break
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end
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checked[other_state] = true
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end
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end
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end
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end
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-- This is the callback for swap_node_force in turnon and turnoff. It determines
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-- whether a conductor node necessitates a lighting update.
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local function get_update_light_conductor(pos, name)
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return light_update_conductors[name] ~= nil
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end
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-- Turn off an equipotential section starting at `pos`, which outputs in the direction of `link`.
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-- Breadth-first search. Map is abstracted away in a voxelmanip.
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-- Follow all all conductor paths replacing conductors that were already
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-- looked at, activating / changing all effectors along the way.
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function mesecon.turnon(pos, link)
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find_light_update_conductors()
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local frontiers = fifo_queue.new()
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frontiers:add({pos = pos, link = link})
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local pos_can_be_skipped = {}
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@ -398,7 +453,7 @@ function mesecon.turnon(pos, link)
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end
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end
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mesecon.swap_node_force(f.pos, mesecon.get_conductor_on(node, f.link))
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mesecon.swap_node_force(f.pos, mesecon.get_conductor_on(node, f.link), get_update_light_conductor)
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end
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-- Only conductors with flat rules can be reliably skipped later
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@ -434,6 +489,8 @@ end
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-- depth = indicates order in which signals wire fired, higher is later
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-- }
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function mesecon.turnoff(pos, link)
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find_light_update_conductors()
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local frontiers = fifo_queue.new()
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frontiers:add({pos = pos, link = link})
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local signals = {}
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@ -470,7 +527,7 @@ function mesecon.turnoff(pos, link)
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end
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end
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mesecon.swap_node_force(f.pos, mesecon.get_conductor_off(node, f.link))
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mesecon.swap_node_force(f.pos, mesecon.get_conductor_off(node, f.link), get_update_light_conductor)
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end
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-- Only conductors with flat rules can be reliably skipped later
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@ -343,7 +343,7 @@ function mesecon.vm_commit()
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if tbl.dirty then
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local vm = tbl.vm
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vm:set_data(tbl.data)
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vm:write_to_map()
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vm:write_to_map(tbl.update_light)
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vm:update_map()
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end
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end
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@ -364,7 +364,7 @@ local function vm_get_or_create_entry(pos)
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local vm = minetest.get_voxel_manip(pos, pos)
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local min_pos, max_pos = vm:get_emerged_area()
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local va = VoxelArea:new{MinEdge = min_pos, MaxEdge = max_pos}
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tbl = {vm = vm, va = va, data = vm:get_data(), param1 = vm:get_light_data(), param2 = vm:get_param2_data(), dirty = false}
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tbl = {vm = vm, va = va, data = vm:get_data(), param1 = vm:get_light_data(), param2 = vm:get_param2_data(), dirty = false, update_light = false}
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vm_cache[hash] = tbl
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end
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return tbl
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@ -388,8 +388,11 @@ end
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-- Sets a node’s name during a VoxelManipulator-based transaction.
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--
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-- Existing param1, param2, and metadata are left alone.
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function mesecon.vm_swap_node(pos, name)
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--
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-- See mesecon.swap_node_force for documentation about get_update_light.
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function mesecon.vm_swap_node(pos, name, get_update_light)
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local tbl = vm_get_or_create_entry(pos)
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tbl.update_light = tbl.update_light or (get_update_light == nil or get_update_light(pos, name))
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local index = tbl.va:indexp(pos)
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tbl.data[index] = minetest.get_content_id(name)
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tbl.dirty = true
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@ -423,13 +426,15 @@ end
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-- Outside a VM transaction, if the mapblock is not loaded, it is pulled into
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-- the server’s main map data cache and then accessed from there.
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--
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-- Inside a VM transaction, the transaction’s VM cache is used.
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-- Inside a VM transaction, the transaction’s VM cache is used. If a third
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-- argument is supplied, it may be called. If it returns false, the swap does
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-- not necessitate a lighting update.
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--
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-- This function can only be used to change the node’s name, not its parameters
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-- or metadata.
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function mesecon.swap_node_force(pos, name)
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function mesecon.swap_node_force(pos, name, get_update_light)
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if vm_cache then
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return mesecon.vm_swap_node(pos, name)
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return mesecon.vm_swap_node(pos, name, get_update_light)
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else
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-- This serves to both ensure the mapblock is loaded and also hand us
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-- the old node table so we can preserve param2.
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