forked from mtcontrib/pipeworks
new flow logic: abms.lua: refactor flowlogic.run_output() into a processing stage of flowlogic.run()
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@ -66,6 +66,7 @@ register.input = register_abm_input
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-- threshold determines the minimum pressure, over which outputfn is called.
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-- threshold determines the minimum pressure, over which outputfn is called.
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-- outputfn is then given the current pressure, and returns the pressure relieved by the output process.
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-- outputfn is then given the current pressure, and returns the pressure relieved by the output process.
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-- outputfn is expected to update environment, nearby world etc. as appropriate for the node.
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-- outputfn is expected to update environment, nearby world etc. as appropriate for the node.
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--[[
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local register_abm_output = function(nodename, threshold, outputfn)
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local register_abm_output = function(nodename, threshold, outputfn)
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minetest.register_abm({
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minetest.register_abm({
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nodenames = { nodename },
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nodenames = { nodename },
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@ -77,6 +78,7 @@ local register_abm_output = function(nodename, threshold, outputfn)
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})
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})
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end
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end
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register.output = register_abm_output
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register.output = register_abm_output
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]]
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-- old spigot ABM code, not yet migrated
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-- old spigot ABM code, not yet migrated
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--[[
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--[[
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@ -68,6 +68,7 @@ end
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flowlogic.run = function(pos, node)
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flowlogic.run = function(pos, node)
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local nodename = node.name
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-- get the current pressure value.
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-- get the current pressure value.
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local nodepressure = get_pressure_access(pos)
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local nodepressure = get_pressure_access(pos)
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local currentpressure = nodepressure.get()
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local currentpressure = nodepressure.get()
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@ -75,6 +76,18 @@ flowlogic.run = function(pos, node)
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-- balance pressure with neighbours
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-- balance pressure with neighbours
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currentpressure = flowlogic.balance_pressure(pos, node, currentpressure)
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currentpressure = flowlogic.balance_pressure(pos, node, currentpressure)
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-- if node is an output: run output phase
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local output = pipeworks.flowables.outputs.list[nodename]
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if output then
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currentpressure = flowlogic.run_output(
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pos,
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node,
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currentpressure,
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output.upper,
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output.lower,
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output.outputfn)
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end
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-- set the new pressure
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-- set the new pressure
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nodepressure.set(currentpressure)
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nodepressure.set(currentpressure)
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end
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end
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@ -176,20 +189,18 @@ end
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flowlogic.run_output = function(pos, node, threshold, outputfn)
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flowlogic.run_output = function(pos, node, currentpressure, upper, lower, outputfn)
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-- callback for output devices.
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-- processing step for water output devices.
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-- takes care of checking a minimum pressure value and updating the node metadata.
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-- takes care of checking a minimum pressure value and updating the resulting pressure level
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-- the outputfn is provided the current pressure and returns the pressure "taken".
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-- the outputfn is provided the current pressure and returns the pressure "taken".
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-- as an example, using this with the above spigot function,
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-- as an example, using this with the above spigot function,
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-- the spigot function tries to output a water source if it will fit in the world.
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-- the spigot function tries to output a water source if it will fit in the world.
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local meta = minetest.get_meta(pos)
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local result = currentpressure
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-- sometimes I wonder if meta:get_* returning default values would ever be problematic.
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if currentpressure > lower then
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-- though here it doesn't matter, an uninit'd node returns 0, which is fine for a new, empty node.
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local currentpressure = meta:get_float(label_pressure)
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if currentpressure > threshold then
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local takenpressure = outputfn(pos, node, currentpressure)
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local takenpressure = outputfn(pos, node, currentpressure)
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local newpressure = currentpressure - takenpressure
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local newpressure = currentpressure - takenpressure
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if newpressure < 0 then currentpressure = 0 end
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if newpressure < 0 then newpressure = 0 end
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meta:set_float(label_pressure, newpressure)
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result = newpressure
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end
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end
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return result
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end
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end
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@ -75,10 +75,7 @@ register.output = function(nodename, upper, lower, outputfn)
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error("pipeworks.flowables.outputs duplicate registration!")
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error("pipeworks.flowables.outputs duplicate registration!")
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end
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end
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checkbase(nodename)
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checkbase(nodename)
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pipeworks.flowables.outputs.list[nodename] = { threshold=threshold, outputfn=outputfn }
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pipeworks.flowables.outputs.list[nodename] = { upper=upper, lower=lower, outputfn=outputfn }
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if pipeworks.toggles.pressure_logic then
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abmregister.output(nodename, lower, outputfn)
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end
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-- output ABM now part of main flow logic ABM to preserve ordering.
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-- output ABM now part of main flow logic ABM to preserve ordering.
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-- note that because outputs have to be a flowable first
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-- note that because outputs have to be a flowable first
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-- (and the installation of the flow logic ABM is conditional),
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-- (and the installation of the flow logic ABM is conditional),
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