mirror of
https://github.com/CHOMPStation2/CHOMPStation2.git
synced 2025-12-10 18:22:39 +00:00
Co-authored-by: Cameron Lennox <killer65311@gmail.com> Co-authored-by: Kashargul <144968721+Kashargul@users.noreply.github.com>
149 lines
5.0 KiB
Plaintext
149 lines
5.0 KiB
Plaintext
SUBSYSTEM_DEF(radiation)
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name = "Radiation"
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wait = 2 SECONDS
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flags = SS_NO_INIT
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var/list/sources = list() // all radiation source datums
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var/list/sources_assoc = list() // Sources indexed by turf for de-duplication.
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var/list/resistance_cache = list() // Cache of turf's radiation resistance.
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var/tmp/list/current_sources = list()
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var/tmp/list/current_res_cache = list()
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var/tmp/list/listeners = list()
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/datum/controller/subsystem/radiation/fire(resumed = FALSE)
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if (!resumed)
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current_sources = sources.Copy()
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current_res_cache = resistance_cache.Copy()
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listeners = living_mob_list.Copy()
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while(current_sources.len)
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var/datum/radiation_source/S = current_sources[current_sources.len]
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current_sources.len--
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if(QDELETED(S))
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sources -= S
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else if(S.decay)
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S.update_rad_power(S.rad_power - CONFIG_GET(number/radiation_decay_rate))
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if (MC_TICK_CHECK)
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return
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while(current_res_cache.len)
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var/turf/T = current_res_cache[current_res_cache.len]
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current_res_cache.len--
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if(QDELETED(T))
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resistance_cache -= T
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else if((length(T.contents) + 1) != resistance_cache[T])
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resistance_cache -= T // If its stale REMOVE it! It will get added if its needed.
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if (MC_TICK_CHECK)
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return
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if(!sources.len)
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listeners.Cut()
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while(listeners.len)
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var/atom/A = listeners[listeners.len]
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listeners.len--
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if(!QDELETED(A))
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var/turf/T = get_turf(A)
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var/rads = get_rads_at_turf(T)
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if(rads)
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A.rad_act(rads)
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if (MC_TICK_CHECK)
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return
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/datum/controller/subsystem/radiation/stat_entry(msg)
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msg = "S:[sources.len], RC:[resistance_cache.len]"
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return ..()
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// Ray trace from all active radiation sources to T and return the strongest effect.
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/datum/controller/subsystem/radiation/proc/get_rads_at_turf(var/turf/T)
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. = 0
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if(!istype(T))
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return
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for(var/datum/radiation_source/source as anything in sources)
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if(source.rad_power < .)
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continue // Already being affected by a stronger source
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if(source.source_turf.z != T.z)
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continue // Radiation is not multi-z
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if(source.respect_maint)
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var/area/A = T.loc
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if(A.flag_check(RAD_SHIELDED))
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continue // In shielded area
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var/dist = get_dist(source.source_turf, T)
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if(dist > source.range)
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continue // Too far to possibly affect
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if(source.flat)
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. += source.rad_power
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continue // No need to ray trace for flat field
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// Okay, now ray trace to find resistence!
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var/turf/origin = source.source_turf
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var/working = source.rad_power
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while(origin != T)
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origin = get_step_towards(origin, T) //Raytracing
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if(!resistance_cache[origin]) //Only get the resistance if we don't already know it.
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origin.calc_rad_resistance()
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if(origin.cached_rad_resistance)
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if(CONFIG_GET(flag/radiation_resistance_calc_mode) == RAD_RESIST_CALC_DIV)
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working = round((working / (origin.cached_rad_resistance * CONFIG_GET(number/radiation_resistance_multiplier))), 0.01)
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else if(CONFIG_GET(flag/radiation_resistance_calc_mode) == RAD_RESIST_CALC_SUB)
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working = round((working - (origin.cached_rad_resistance * CONFIG_GET(number/radiation_resistance_multiplier))), 0.01)
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if(working <= CONFIG_GET(number/radiation_lower_limit)) // Too far from this source
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working = 0 // May as well be 0
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break
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// Accumulate radiation from all sources in range, not just the biggest.
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// Shouldn't really ever have practical uses, but standing in a room literally made from uranium is more dangerous than standing next to a single uranium vase
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. += working / (dist ** 2)
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if(. <= CONFIG_GET(number/radiation_lower_limit))
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. = 0
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// Add a radiation source instance to the repository. It will override any existing source on the same turf.
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/datum/controller/subsystem/radiation/proc/add_source(var/datum/radiation_source/S)
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if(!isturf(S.source_turf))
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return
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var/datum/radiation_source/existing = sources_assoc[S.source_turf]
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if(existing)
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qdel(existing)
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sources += S
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sources_assoc[S.source_turf] = S
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// Creates a temporary radiation source that will decay
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/datum/controller/subsystem/radiation/proc/radiate(source, power) //Sends out a radiation pulse, taking walls into account
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if(!(source && power)) //Sanity checking
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return
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var/datum/radiation_source/S = new()
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S.source_turf = get_turf(source)
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S.update_rad_power(power)
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add_source(S)
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// Sets the radiation in a range to a constant value.
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/datum/controller/subsystem/radiation/proc/flat_radiate(source, power, range, var/respect_maint = TRUE) //VOREStation edit; Respect shielded areas by default please.
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if(!(source && power && range))
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return
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var/datum/radiation_source/S = new()
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S.flat = TRUE
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S.range = range
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S.respect_maint = respect_maint
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S.source_turf = get_turf(source)
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S.update_rad_power(power)
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add_source(S)
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// Irradiates a full Z-level. Hacky way of doing it, but not too expensive.
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/datum/controller/subsystem/radiation/proc/z_radiate(var/atom/source, power, var/respect_maint = TRUE) //VOREStation edit; Respect shielded areas by default please.
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if(!(power && source))
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return
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var/turf/epicentre = locate(round(world.maxx / 2), round(world.maxy / 2), source.z)
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flat_radiate(epicentre, power, world.maxx, respect_maint)
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