forked from mtcontrib/pipeworks
new flow logic: node registry: split registration functions into seperate file to allow ABM code to inspect tables
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3a1edac06c
commit
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3
init.lua
3
init.lua
@ -118,9 +118,10 @@ dofile(pipeworks.modpath.."/wielder.lua")
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local logicdir = "/new_flow_logic/"
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-- note that even with these files the new flow logic is not yet default
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dofile(pipeworks.modpath..logicdir.."flowable_node_registry.lua")
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dofile(pipeworks.modpath..logicdir.."abms.lua")
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dofile(pipeworks.modpath..logicdir.."abm_register.lua")
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dofile(pipeworks.modpath..logicdir.."flowable_node_registry.lua")
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dofile(pipeworks.modpath..logicdir.."flowable_node_registry_install.lua")
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if pipeworks.enable_pipes then dofile(pipeworks.modpath.."/pipes.lua") end
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if pipeworks.enable_teleport_tube then dofile(pipeworks.modpath.."/teleport_tube.lua") end
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@ -1,8 +1,12 @@
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-- registration code for nodes under new flow logic
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-- registry of flowable node behaviours in new flow logic
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-- written 2017 by thetaepsilon
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-- use for hooking up ABMs as nodes are registered
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local abmregister = pipeworks.flowlogic.abmregister
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-- the actual registration functions which edit these tables can be found in flowable_node_registry_install.lua
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-- this is because the ABM code needs to inspect these tables,
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-- but the registration code needs to reference said ABM code.
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-- so those functions were split out to resolve a circular dependency.
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pipeworks.flowables = {}
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pipeworks.flowables.list = {}
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@ -22,66 +26,3 @@ pipeworks.flowables.inputs.nodenames = {}
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pipeworks.flowables.outputs = {}
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pipeworks.flowables.outputs.list = {}
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-- not currently any nodenames arraylist for this one as it's not currently needed.
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-- registration functions
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pipeworks.flowables.register = {}
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local register = pipeworks.flowables.register
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-- some sanity checking for passed args, as this could potentially be made an external API eventually
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local checkexists = function(nodename)
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if type(nodename) ~= "string" then error("pipeworks.flowables nodename must be a string!") end
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return pipeworks.flowables.list.all[nodename]
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end
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local insertbase = function(nodename)
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if checkexists(nodename) then error("pipeworks.flowables duplicate registration!") end
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pipeworks.flowables.list.all[nodename] = true
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-- table.insert(pipeworks.flowables.list.nodenames, nodename)
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end
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-- Register a node as a simple flowable.
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-- Simple flowable nodes have no considerations for direction of flow;
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-- A cluster of adjacent simple flowables will happily average out in any direction.
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register.simple = function(nodename)
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insertbase(nodename)
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pipeworks.flowables.list.simple[nodename] = true
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table.insert(pipeworks.flowables.list.simple_nodenames, nodename)
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if pipeworks.enable_new_flow_logic then
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abmregister.balance(nodename)
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end
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end
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local checkbase = function(nodename)
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if not checkexists(nodename) then error("pipeworks.flowables node doesn't exist as a flowable!") end
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end
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-- Register a node as a simple intake.
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-- Expects node to be registered as a flowable (is present in flowables.list.all),
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-- so that water can move out of it.
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-- maxpressure is the maximum pipeline pressure that this node can drive.
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-- possible WISHME here: technic-driven high-pressure pumps
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register.intake_simple = function(nodename, maxpressure)
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checkbase(nodename)
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pipeworks.flowables.inputs.list[nodename] = { maxpressure=maxpressure }
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table.insert(pipeworks.flowables.inputs.nodenames, nodename)
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if pipeworks.enable_new_flow_logic then
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abmregister.input(nodename, maxpressure, pipeworks.flowlogic.check_for_liquids_v2)
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end
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end
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-- Register a node as an output.
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-- Expects node to already be a flowable.
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-- threshold and outputfn are currently as documented for register_abm_output() in abm_register.lua.
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register.output = function(nodename, threshold, outputfn)
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checkbase(nodename)
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pipeworks.flowables.outputs.list[nodename] = { threshold=threshold, outputfn=outputfn }
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if pipeworks.enable_new_flow_logic then
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abmregister.output(nodename, threshold, outputfn)
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end
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end
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-- TODOs here:
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-- The spigot's output behaviour (and possibly the fountain) could be abstracted out into a "simple output" of sorts,
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-- which tries to place water nodes around it.
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-- possibly this could be given a helper function to determine which faces a node should try,
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-- to allow things like rotation or other param values determining "direction" to be respected.
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70
new_flow_logic/flowable_node_registry_install.lua
Normal file
70
new_flow_logic/flowable_node_registry_install.lua
Normal file
@ -0,0 +1,70 @@
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-- flowable node registry: add entries and install ABMs if new flow logic is enabled
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-- written 2017 by thetaepsilon
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-- use for hooking up ABMs as nodes are registered
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local abmregister = pipeworks.flowlogic.abmregister
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-- registration functions
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pipeworks.flowables.register = {}
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local register = pipeworks.flowables.register
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-- some sanity checking for passed args, as this could potentially be made an external API eventually
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local checkexists = function(nodename)
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if type(nodename) ~= "string" then error("pipeworks.flowables nodename must be a string!") end
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return pipeworks.flowables.list.all[nodename]
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end
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local insertbase = function(nodename)
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if checkexists(nodename) then error("pipeworks.flowables duplicate registration!") end
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pipeworks.flowables.list.all[nodename] = true
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-- table.insert(pipeworks.flowables.list.nodenames, nodename)
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end
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-- Register a node as a simple flowable.
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-- Simple flowable nodes have no considerations for direction of flow;
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-- A cluster of adjacent simple flowables will happily average out in any direction.
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register.simple = function(nodename)
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insertbase(nodename)
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pipeworks.flowables.list.simple[nodename] = true
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table.insert(pipeworks.flowables.list.simple_nodenames, nodename)
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if pipeworks.enable_new_flow_logic then
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abmregister.balance(nodename)
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end
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end
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local checkbase = function(nodename)
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if not checkexists(nodename) then error("pipeworks.flowables node doesn't exist as a flowable!") end
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end
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-- Register a node as a simple intake.
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-- Expects node to be registered as a flowable (is present in flowables.list.all),
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-- so that water can move out of it.
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-- maxpressure is the maximum pipeline pressure that this node can drive.
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-- possible WISHME here: technic-driven high-pressure pumps
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register.intake_simple = function(nodename, maxpressure)
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checkbase(nodename)
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pipeworks.flowables.inputs.list[nodename] = { maxpressure=maxpressure }
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table.insert(pipeworks.flowables.inputs.nodenames, nodename)
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if pipeworks.enable_new_flow_logic then
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abmregister.input(nodename, maxpressure, pipeworks.flowlogic.check_for_liquids_v2)
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end
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end
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-- Register a node as an output.
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-- Expects node to already be a flowable.
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-- threshold and outputfn are currently as documented for register_abm_output() in abm_register.lua.
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register.output = function(nodename, threshold, outputfn)
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checkbase(nodename)
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pipeworks.flowables.outputs.list[nodename] = { threshold=threshold, outputfn=outputfn }
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if pipeworks.enable_new_flow_logic then
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abmregister.output(nodename, threshold, outputfn)
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end
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end
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-- TODOs here:
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-- The spigot's output behaviour (and possibly the fountain) could be abstracted out into a "simple output" of sorts,
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-- which tries to place water nodes around it.
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-- possibly this could be given a helper function to determine which faces a node should try,
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-- to allow things like rotation or other param values determining "direction" to be respected.
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