initial commit - cross reference with 5th port - obviously has compile errors
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@@ -0,0 +1,354 @@
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#define SSAIR_PIPENETS 1
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#define SSAIR_ATMOSMACHINERY 2
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#define SSAIR_ACTIVETURFS 3
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#define SSAIR_EXCITEDGROUPS 4
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#define SSAIR_HIGHPRESSURE 5
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#define SSAIR_HOTSPOTS 6
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#define SSAIR_SUPERCONDUCTIVITY 7
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var/datum/subsystem/air/SSair
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/datum/subsystem/air
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name = "Air"
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init_order = -1
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priority = 20
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wait = 5
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flags = SS_BACKGROUND
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display_order = 1
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var/cost_turfs = 0
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var/cost_groups = 0
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var/cost_highpressure = 0
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var/cost_hotspots = 0
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var/cost_superconductivity = 0
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var/cost_pipenets = 0
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var/cost_atmos_machinery = 0
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var/list/excited_groups = list()
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var/list/active_turfs = list()
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var/list/hotspots = list()
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var/list/networks = list()
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var/list/obj/machinery/atmos_machinery = list()
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//Special functions lists
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var/list/turf/active_super_conductivity = list()
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var/list/turf/open/high_pressure_delta = list()
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var/list/currentrun = list()
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var/currentpart = SSAIR_PIPENETS
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/datum/subsystem/air/New()
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NEW_SS_GLOBAL(SSair)
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/datum/subsystem/air/stat_entry(msg)
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msg += "C:{"
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msg += "AT:[round(cost_turfs)]|"
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msg += "EG:[round(cost_groups)]|"
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msg += "HP:[round(cost_highpressure)]|"
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msg += "HS:[round(cost_hotspots)]|"
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msg += "SC:[round(cost_superconductivity)]|"
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msg += "PN:[round(cost_pipenets)]|"
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msg += "AM:[round(cost_atmos_machinery)]"
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msg += "} "
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msg += "AT:[active_turfs.len]|"
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msg += "EG:[excited_groups.len]|"
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msg += "HS:[hotspots.len]|"
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msg += "AS:[active_super_conductivity.len]"
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..(msg)
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/datum/subsystem/air/Initialize(timeofday)
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setup_allturfs()
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setup_atmos_machinery()
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setup_pipenets()
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..()
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/datum/subsystem/air/fire(resumed = 0)
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var/timer = world.tick_usage
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if(currentpart == SSAIR_PIPENETS || !resumed)
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process_pipenets(resumed)
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cost_pipenets = MC_AVERAGE(cost_pipenets, TICK_DELTA_TO_MS(world.tick_usage - timer))
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if(paused)
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return
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resumed = 0
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currentpart = SSAIR_ATMOSMACHINERY
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if(currentpart == SSAIR_ATMOSMACHINERY)
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timer = world.tick_usage
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process_atmos_machinery(resumed)
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cost_atmos_machinery = MC_AVERAGE(cost_atmos_machinery, TICK_DELTA_TO_MS(world.tick_usage - timer))
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if(paused)
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return
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resumed = 0
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currentpart = SSAIR_ACTIVETURFS
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if(currentpart == SSAIR_ACTIVETURFS)
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timer = world.tick_usage
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process_active_turfs(resumed)
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cost_turfs = MC_AVERAGE(cost_turfs, TICK_DELTA_TO_MS(world.tick_usage - timer))
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if(paused)
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return
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resumed = 0
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currentpart = SSAIR_EXCITEDGROUPS
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if(currentpart == SSAIR_EXCITEDGROUPS)
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timer = world.tick_usage
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process_excited_groups(resumed)
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cost_groups = MC_AVERAGE(cost_groups, TICK_DELTA_TO_MS(world.tick_usage - timer))
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if(paused)
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return
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resumed = 0
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currentpart = SSAIR_HIGHPRESSURE
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if(currentpart == SSAIR_HIGHPRESSURE)
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timer = world.tick_usage
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process_high_pressure_delta(resumed)
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cost_highpressure = MC_AVERAGE(cost_highpressure, TICK_DELTA_TO_MS(world.tick_usage - timer))
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if(paused)
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return
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resumed = 0
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currentpart = SSAIR_HOTSPOTS
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if(currentpart == SSAIR_HOTSPOTS)
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timer = world.tick_usage
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process_hotspots(resumed)
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cost_hotspots = MC_AVERAGE(cost_hotspots, TICK_DELTA_TO_MS(world.tick_usage - timer))
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if(paused)
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return
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resumed = 0
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currentpart = SSAIR_SUPERCONDUCTIVITY
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if(currentpart == SSAIR_SUPERCONDUCTIVITY)
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timer = world.tick_usage
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process_super_conductivity(resumed)
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cost_superconductivity = MC_AVERAGE(cost_superconductivity, TICK_DELTA_TO_MS(world.tick_usage - timer))
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if(paused)
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return
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resumed = 0
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currentpart = SSAIR_PIPENETS
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/datum/subsystem/air/proc/process_pipenets(resumed = 0)
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if (!resumed)
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src.currentrun = networks.Copy()
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//cache for sanic speed (lists are references anyways)
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var/list/currentrun = src.currentrun
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while(currentrun.len)
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var/datum/thing = currentrun[currentrun.len]
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currentrun.len--
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if(thing)
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thing.process()
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else
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networks.Remove(thing)
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if(MC_TICK_CHECK)
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return
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/datum/subsystem/air/proc/process_atmos_machinery(resumed = 0)
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var/seconds = wait * 0.1
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if (!resumed)
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src.currentrun = atmos_machinery.Copy()
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//cache for sanic speed (lists are references anyways)
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var/list/currentrun = src.currentrun
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while(currentrun.len)
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var/obj/machinery/M = currentrun[currentrun.len]
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currentrun.len--
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if(!M || (M.process_atmos(seconds) == PROCESS_KILL))
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atmos_machinery.Remove(M)
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if(MC_TICK_CHECK)
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return
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/datum/subsystem/air/proc/process_super_conductivity(resumed = 0)
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if (!resumed)
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src.currentrun = active_super_conductivity.Copy()
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//cache for sanic speed (lists are references anyways)
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var/list/currentrun = src.currentrun
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while(currentrun.len)
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var/turf/T = currentrun[currentrun.len]
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currentrun.len--
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T.super_conduct()
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if(MC_TICK_CHECK)
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return
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/datum/subsystem/air/proc/process_hotspots(resumed = 0)
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if (!resumed)
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src.currentrun = hotspots.Copy()
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//cache for sanic speed (lists are references anyways)
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var/list/currentrun = src.currentrun
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while(currentrun.len)
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var/obj/effect/hotspot/H = currentrun[currentrun.len]
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currentrun.len--
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if (H)
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H.process()
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else
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hotspots -= H
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if(MC_TICK_CHECK)
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return
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/datum/subsystem/air/proc/process_high_pressure_delta(resumed = 0)
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while (high_pressure_delta.len)
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var/turf/open/T = high_pressure_delta[high_pressure_delta.len]
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high_pressure_delta.len--
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T.high_pressure_movements()
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T.pressure_difference = 0
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if(MC_TICK_CHECK)
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return
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/datum/subsystem/air/proc/process_active_turfs(resumed = 0)
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//cache for sanic speed
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var/fire_count = times_fired
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if (!resumed)
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src.currentrun = active_turfs.Copy()
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//cache for sanic speed (lists are references anyways)
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var/list/currentrun = src.currentrun
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while(currentrun.len)
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var/turf/open/T = currentrun[currentrun.len]
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currentrun.len--
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if (T)
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T.process_cell(fire_count)
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if (MC_TICK_CHECK)
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return
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/datum/subsystem/air/proc/process_excited_groups(resumed = 0)
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if (!resumed)
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src.currentrun = excited_groups.Copy()
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//cache for sanic speed (lists are references anyways)
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var/list/currentrun = src.currentrun
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while(currentrun.len)
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var/datum/excited_group/EG = currentrun[currentrun.len]
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currentrun.len--
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EG.breakdown_cooldown++
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EG.dismantle_cooldown++
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if(EG.breakdown_cooldown >= EXCITED_GROUP_BREAKDOWN_CYCLES)
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EG.self_breakdown()
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else if(EG.dismantle_cooldown >= EXCITED_GROUP_DISMANTLE_CYCLES)
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EG.dismantle()
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if (MC_TICK_CHECK)
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return
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/datum/subsystem/air/proc/remove_from_active(turf/open/T)
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active_turfs -= T
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if(istype(T))
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T.excited = 0
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if(T.excited_group)
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T.excited_group.garbage_collect()
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/datum/subsystem/air/proc/add_to_active(turf/open/T, blockchanges = 1)
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if(istype(T) && T.air)
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T.excited = 1
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active_turfs |= T
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if(blockchanges && T.excited_group)
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T.excited_group.garbage_collect()
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else
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for(var/turf/S in T.atmos_adjacent_turfs)
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add_to_active(S)
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/datum/subsystem/air/proc/setup_allturfs()
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var/list/turfs_to_init = block(locate(1, 1, 1), locate(world.maxx, world.maxy, world.maxz))
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var/list/active_turfs = src.active_turfs
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var/times_fired = ++src.times_fired
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for(var/thing in turfs_to_init)
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var/turf/T = thing
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active_turfs -= T
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if (T.blocks_air)
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continue
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T.Initalize_Atmos(times_fired)
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if(active_turfs.len)
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var/starting_ats = active_turfs.len
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sleep(world.tick_lag)
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var/timer = world.timeofday
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warning("There are [starting_ats] active turfs at roundstart, this is a mapping error caused by a difference of the air between the adjacent turfs. You can see its coordinates using \"Mapping -> Show roundstart AT list\" verb (debug verbs required)")
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for(var/turf/T in active_turfs)
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active_turfs_startlist += text("[T.x], [T.y], [T.z]\n")
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//now lets clear out these active turfs
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var/list/turfs_to_check = active_turfs.Copy()
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do
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var/list/new_turfs_to_check = list()
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for(var/turf/open/T in turfs_to_check)
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new_turfs_to_check += T.resolve_active_graph()
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active_turfs += new_turfs_to_check
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turfs_to_check = new_turfs_to_check
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while (turfs_to_check.len)
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var/ending_ats = active_turfs.len
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for(var/thing in excited_groups)
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var/datum/excited_group/EG = thing
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EG.self_breakdown(space_is_all_consuming = 1)
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EG.dismantle()
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var/msg = "HEY! LISTEN! [(world.timeofday - timer)/10] Seconds were wasted processing [starting_ats] turf(s) (connected to [ending_ats] other turfs) with atmos differences at round start."
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world << "<span class='boldannounce'>[msg]</span>"
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warning(msg)
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/turf/open/proc/resolve_active_graph()
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. = list()
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var/datum/excited_group/EG = excited_group
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if (blocks_air || !air)
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return
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if (!EG)
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EG = new
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EG.add_turf(src)
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for (var/turf/open/ET in atmos_adjacent_turfs)
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if ( ET.blocks_air || !ET.air)
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continue
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var/ET_EG = ET.excited_group
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if (ET_EG)
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if (ET_EG != EG)
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EG.merge_groups(ET_EG)
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EG = excited_group //merge_groups() may decide to replace our current EG
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else
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EG.add_turf(ET)
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if (!ET.excited)
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ET.excited = 1
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. += ET
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/turf/open/space/resolve_active_graph()
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return list()
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/datum/subsystem/air/proc/setup_atmos_machinery()
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for (var/obj/machinery/atmospherics/AM in atmos_machinery)
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AM.atmosinit()
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CHECK_TICK
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//this can't be done with setup_atmos_machinery() because
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// all atmos machinery has to initalize before the first
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// pipenet can be built.
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/datum/subsystem/air/proc/setup_pipenets()
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for (var/obj/machinery/atmospherics/AM in atmos_machinery)
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AM.build_network()
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CHECK_TICK
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/datum/subsystem/air/proc/setup_template_machinery(list/atmos_machines)
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for(var/A in atmos_machines)
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var/obj/machinery/atmospherics/AM = A
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AM.atmosinit()
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CHECK_TICK
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for(var/A in atmos_machines)
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var/obj/machinery/atmospherics/AM = A
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AM.build_network()
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CHECK_TICK
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#undef SSAIR_PIPENETS
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#undef SSAIR_ATMOSMACHINERY
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#undef SSAIR_ACTIVETURFS
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#undef SSAIR_EXCITEDGROUPS
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#undef SSAIR_HIGHPRESSURE
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#undef SSAIR_HOTSPOT
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#undef SSAIR_SUPERCONDUCTIVITY
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