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* Some nightshift fixes (#68566) Fixes APC night shift manual cycling balloon alert; update_nightshift uses the correct variable * Some nightshift fixes Co-authored-by: Profakos <profakos@gmail.com>
568 lines
18 KiB
Plaintext
568 lines
18 KiB
Plaintext
// the Area Power Controller (APC), formerly Power Distribution Unit (PDU)
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// one per area, needs wire connection to power network through a terminal
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// controls power to devices in that area
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// may be opened to change power cell
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// three different channels (lighting/equipment/environ) - may each be set to on, off, or auto
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/obj/machinery/power/apc
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name = "area power controller"
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desc = "A control terminal for the area's electrical systems."
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icon_state = "apc0"
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use_power = NO_POWER_USE
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req_access = null
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max_integrity = 200
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integrity_failure = 0.25
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damage_deflection = 10
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resistance_flags = FIRE_PROOF
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interaction_flags_machine = INTERACT_MACHINE_WIRES_IF_OPEN | INTERACT_MACHINE_ALLOW_SILICON | INTERACT_MACHINE_OPEN_SILICON
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///Range of the light emitted when on
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var/light_on_range = 1.5
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///Reference to our area
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var/area/area
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///Mapper helper to tie an apc to another area
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var/areastring = null
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///Reference to our internal cell
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var/obj/item/stock_parts/cell/cell
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///Initial cell charge %
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var/start_charge = 90
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///Type of cell we start with
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var/cell_type = /obj/item/stock_parts/cell/upgraded //Base cell has 2500 capacity. Enter the path of a different cell you want to use. cell determines charge rates, max capacity, ect. These can also be changed with other APC vars, but isn't recommended to minimize the risk of accidental usage of dirty editted APCs
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///State of the cover (closed, opened, removed)
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var/opened = APC_COVER_CLOSED
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///Is the APC shorted and not working?
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var/shorted = FALSE
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///State of the lighting channel (off, auto off, on, auto on)
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var/lighting = APC_CHANNEL_AUTO_ON
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///State of the equipment channel (off, auto off, on, auto on)
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var/equipment = APC_CHANNEL_AUTO_ON
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///State of the environmental channel (off, auto off, on, auto on)
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var/environ = APC_CHANNEL_AUTO_ON
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///Is the apc working
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var/operating = TRUE
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///State of the apc charging (not charging, charging, fully charged)
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var/charging = APC_NOT_CHARGING
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///Can the APC charge?
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var/chargemode = TRUE
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///Number of ticks where the apc is trying to recharge
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var/chargecount = 0
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///Is the apc interface locked?
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var/locked = TRUE
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///Is the apc cover locked?
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var/coverlocked = TRUE
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///Is the AI locked from using the APC
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var/aidisabled = FALSE
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///Reference to our cable terminal
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var/obj/machinery/power/terminal/terminal = null
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///Amount of power used by the lighting channel
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var/lastused_light = 0
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///Amount of power used by the equipment channel
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var/lastused_equip = 0
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///Amount of power used by the environmental channel
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var/lastused_environ = 0
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///Total amount of power used by the three channels
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var/lastused_total = 0
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///State of the apc external power (no power, low power, has power)
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var/main_status = APC_NO_POWER
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powernet = FALSE // set so that APCs aren't found as powernet nodes //Hackish, Horrible, was like this before I changed it :(
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///Is the apc hacked by a malf ai?
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var/malfhack = FALSE //New var for my changes to AI malf. --NeoFite
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///Reference to our ai hacker
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var/mob/living/silicon/ai/malfai = null //See above --NeoFite
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///State of the electronics inside (missing, installed, secured)
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var/has_electronics = APC_ELECTRONICS_MISSING
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///used for the Blackout malf module
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var/overload = 1
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///used for counting how many times it has been hit, used for Aliens at the moment
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var/beenhit = 0
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///Reference to the shunted ai inside
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var/mob/living/silicon/ai/occupier = null
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///Is there an AI being transferred out of us?
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var/transfer_in_progress = FALSE
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///buffer state that makes apcs not shut off channels immediately as long as theres some power left, effect visible in apcs only slowly losing power
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var/long_term_power = 10
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///Automatically name the APC after the area is in
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var/auto_name = FALSE
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///Time to allow the APC to regain some power and to turn the channels back online
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var/failure_timer = 0
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///Forces an update on the power use to ensure that the apc has enough power
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var/force_update = FALSE
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///Should the emergency lights be on?
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var/emergency_lights = FALSE
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///Should the nighshift lights be on?
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var/nightshift_lights = FALSE
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///Time when the nightshift where turned on last, to prevent spamming
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var/last_nightshift_switch = 0
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///Stores the flags for the icon state
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var/update_state = -1
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///Stores the flag for the overlays
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var/update_overlay = -1
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///Used to stop process from updating the icons too much
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var/icon_update_needed = FALSE
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///Reference to our remote control
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var/obj/machinery/computer/apc_control/remote_control = null
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///Represents a signel source of power alarms for this apc
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var/datum/alarm_handler/alarm_manager
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/// Offsets the object by APC_PIXEL_OFFSET (defined in apc_defines.dm) pixels in the direction we want it placed in. This allows the APC to be embedded in a wall, yet still inside an area (like mapping).
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var/offset_old
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/obj/machinery/power/apc/New(turf/loc, ndir, building=0)
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if(!req_access)
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req_access = list(ACCESS_ENGINE_EQUIP)
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if(!armor)
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armor = list(MELEE = 20, BULLET = 20, LASER = 10, ENERGY = 100, BOMB = 30, BIO = 0, FIRE = 90, ACID = 50)
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..()
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GLOB.apcs_list += src
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wires = new /datum/wires/apc(src)
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if(building)
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area = get_area(src)
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opened = APC_COVER_OPENED
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operating = FALSE
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name = "\improper [get_area_name(area, TRUE)] APC"
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set_machine_stat(machine_stat | MAINT)
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update_appearance()
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addtimer(CALLBACK(src, .proc/update), 5)
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dir = ndir
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switch(dir)
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if(NORTH)
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offset_old = pixel_y
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pixel_y = APC_PIXEL_OFFSET
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if(SOUTH)
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offset_old = pixel_y
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pixel_y = -APC_PIXEL_OFFSET
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if(EAST)
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offset_old = pixel_x
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pixel_x = APC_PIXEL_OFFSET
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if(WEST)
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offset_old = pixel_x
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pixel_x = -APC_PIXEL_OFFSET
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/obj/machinery/power/apc/Initialize(mapload)
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. = ..()
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AddElement(/datum/element/atmos_sensitive, mapload)
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alarm_manager = new(src)
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if(!mapload)
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return
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has_electronics = APC_ELECTRONICS_SECURED
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// is starting with a power cell installed, create it and set its charge level
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if(cell_type)
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cell = new cell_type
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cell.charge = start_charge * cell.maxcharge / 100 // (convert percentage to actual value)
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var/area/our_area = get_area(loc)
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//if area isn't specified use current
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if(areastring)
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area = get_area_instance_from_text(areastring)
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if(!area)
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area = our_area
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stack_trace("Bad areastring path for [src], [areastring]")
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else if(isarea(our_area) && areastring == null)
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area = our_area
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if(auto_name)
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name = "\improper [get_area_name(area, TRUE)] APC"
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if(area)
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if(area.apc)
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log_mapping("Duplicate APC created at [AREACOORD(src)]. Original at [AREACOORD(area.apc)].")
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area.apc = src
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update_appearance()
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make_terminal()
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addtimer(CALLBACK(src, .proc/update), 5)
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///This is how we test to ensure that mappers use the directional subtypes of APCs, rather than use the parent and pixel-shift it themselves.
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if(abs(offset_old) != APC_PIXEL_OFFSET)
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log_mapping("APC: ([src]) at [AREACOORD(src)] with dir ([dir] | [uppertext(dir2text(dir))]) has pixel_[dir & (WEST|EAST) ? "x" : "y"] value [offset_old] - should be [dir & (SOUTH|EAST) ? "-" : ""][APC_PIXEL_OFFSET]. Use the directional/ helpers!")
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/obj/machinery/power/apc/Destroy()
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GLOB.apcs_list -= src
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if(malfai && operating)
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malfai.malf_picker.processing_time = clamp(malfai.malf_picker.processing_time - 10,0,1000)
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if(area)
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area.power_light = FALSE
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area.power_equip = FALSE
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area.power_environ = FALSE
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area.power_change()
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area.apc = null
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QDEL_NULL(alarm_manager)
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if(occupier)
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malfvacate(TRUE)
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if(wires)
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QDEL_NULL(wires)
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if(cell)
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QDEL_NULL(cell)
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if(terminal)
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disconnect_terminal()
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. = ..()
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/obj/machinery/power/apc/handle_atom_del(atom/atom_to_check)
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if(atom_to_check == cell)
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cell = null
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update_appearance()
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/obj/machinery/power/apc/examine(mob/user)
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. = ..()
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if(machine_stat & BROKEN)
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return
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if(opened)
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if(has_electronics && terminal)
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. += "The cover is [opened==APC_COVER_REMOVED?"removed":"open"] and the power cell is [ cell ? "installed" : "missing"]."
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else
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. += {"It's [ !terminal ? "not" : "" ] wired up.\n
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The electronics are[!has_electronics?"n't":""] installed."}
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else
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if(machine_stat & MAINT)
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. += "The cover is closed. Something is wrong with it. It doesn't work."
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else if(malfhack)
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. += "The cover is broken. It may be hard to force it open."
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else
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. += "The cover is closed."
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. += span_notice("Right-click the APC to [ locked ? "unlock" : "lock"] the interface.")
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if(issilicon(user))
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. += span_notice("Ctrl-Click the APC to switch the breaker [ operating ? "off" : "on"].")
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/obj/machinery/power/apc/deconstruct(disassembled = TRUE)
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if(flags_1 & NODECONSTRUCT_1)
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return
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if(!(machine_stat & BROKEN))
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set_broken()
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if(opened != APC_COVER_REMOVED)
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opened = APC_COVER_REMOVED
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coverlocked = FALSE
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visible_message(span_warning("The APC cover is knocked down!"))
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update_appearance()
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/obj/machinery/power/apc/ui_interact(mob/user, datum/tgui/ui)
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ui = SStgui.try_update_ui(user, src, ui)
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if(!ui)
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ui = new(user, src, "Apc", name)
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ui.open()
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/obj/machinery/power/apc/ui_data(mob/user)
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var/list/data = list(
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"locked" = locked,
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"failTime" = failure_timer,
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"isOperating" = operating,
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"externalPower" = main_status,
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"powerCellStatus" = cell ? cell.percent() : null,
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"chargeMode" = chargemode,
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"chargingStatus" = charging,
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"totalLoad" = display_power(lastused_total),
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"coverLocked" = coverlocked,
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"siliconUser" = user.has_unlimited_silicon_privilege || user.using_power_flow_console(),
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"malfStatus" = get_malf_status(user),
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"emergencyLights" = !emergency_lights,
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"nightshiftLights" = nightshift_lights,
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"powerChannels" = list(
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list(
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"title" = "Equipment",
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"powerLoad" = display_power(lastused_equip),
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"status" = equipment,
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"topicParams" = list(
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"auto" = list("eqp" = 3),
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"on" = list("eqp" = 2),
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"off" = list("eqp" = 1),
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)
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),
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list(
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"title" = "Lighting",
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"powerLoad" = display_power(lastused_light),
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"status" = lighting,
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"topicParams" = list(
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"auto" = list("lgt" = 3),
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"on" = list("lgt" = 2),
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"off" = list("lgt" = 1),
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)
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),
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list(
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"title" = "Environment",
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"powerLoad" = display_power(lastused_environ),
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"status" = environ,
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"topicParams" = list(
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"auto" = list("env" = 3),
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"on" = list("env" = 2),
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"off" = list("env" = 1),
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)
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)
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)
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)
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return data
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/obj/machinery/power/apc/ui_status(mob/user)
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. = ..()
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if(!QDELETED(remote_control) && user == remote_control.operator)
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. = UI_INTERACTIVE
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/obj/machinery/power/apc/ui_act(action, params)
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. = ..()
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if(. || !can_use(usr, 1) || (locked && !usr.has_unlimited_silicon_privilege && !failure_timer && action != "toggle_nightshift"))
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return
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switch(action)
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if("lock")
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if(usr.has_unlimited_silicon_privilege)
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if((obj_flags & EMAGGED) || (machine_stat & (BROKEN|MAINT)))
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to_chat(usr, span_warning("The APC does not respond to the command!"))
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else
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locked = !locked
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update_appearance()
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. = TRUE
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if("cover")
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coverlocked = !coverlocked
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. = TRUE
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if("breaker")
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toggle_breaker(usr)
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. = TRUE
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if("toggle_nightshift")
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toggle_nightshift_lights(usr)
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. = TRUE
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if("charge")
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chargemode = !chargemode
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if(!chargemode)
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charging = APC_NOT_CHARGING
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update_appearance()
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. = TRUE
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if("channel")
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if(params["eqp"])
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equipment = setsubsystem(text2num(params["eqp"]))
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update_appearance()
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update()
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else if(params["lgt"])
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lighting = setsubsystem(text2num(params["lgt"]))
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update_appearance()
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update()
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else if(params["env"])
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environ = setsubsystem(text2num(params["env"]))
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update_appearance()
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update()
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. = TRUE
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if("overload")
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if(usr.has_unlimited_silicon_privilege)
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overload_lighting()
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. = TRUE
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if("hack")
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if(get_malf_status(usr))
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malfhack(usr)
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if("occupy")
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if(get_malf_status(usr))
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malfoccupy(usr)
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if("deoccupy")
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if(get_malf_status(usr))
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malfvacate()
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if("reboot")
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failure_timer = 0
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update_appearance()
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update()
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if("emergency_lighting")
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emergency_lights = !emergency_lights
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for(var/obj/machinery/light/L in area)
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if(!initial(L.no_low_power)) //If there was an override set on creation, keep that override
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L.no_low_power = emergency_lights
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INVOKE_ASYNC(L, /obj/machinery/light/.proc/update, FALSE)
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CHECK_TICK
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return TRUE
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/obj/machinery/power/apc/process()
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if(icon_update_needed)
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update_appearance()
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if(machine_stat & (BROKEN|MAINT))
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return
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if(!area || !area.requires_power)
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return
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if(failure_timer)
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update()
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queue_icon_update()
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failure_timer--
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force_update = TRUE
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return
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//dont use any power from that channel if we shut that power channel off
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lastused_light = APC_CHANNEL_IS_ON(lighting) ? area.power_usage[AREA_USAGE_LIGHT] + area.power_usage[AREA_USAGE_STATIC_LIGHT] : 0
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lastused_equip = APC_CHANNEL_IS_ON(equipment) ? area.power_usage[AREA_USAGE_EQUIP] + area.power_usage[AREA_USAGE_STATIC_EQUIP] : 0
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lastused_environ = APC_CHANNEL_IS_ON(environ) ? area.power_usage[AREA_USAGE_ENVIRON] + area.power_usage[AREA_USAGE_STATIC_ENVIRON] : 0
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area.clear_usage()
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lastused_total = lastused_light + lastused_equip + lastused_environ
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//store states to update icon if any change
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var/last_lt = lighting
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var/last_eq = equipment
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var/last_en = environ
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var/last_ch = charging
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var/excess = surplus()
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if(!avail())
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main_status = APC_NO_POWER
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else if(excess < 0)
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main_status = APC_LOW_POWER
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else
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main_status = APC_HAS_POWER
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if(cell && !shorted)
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// draw power from cell as before to power the area
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var/cellused = min(cell.charge, lastused_total JOULES) // clamp deduction to a max, amount left in cell
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cell.use(cellused)
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if(excess > lastused_total) // if power excess recharge the cell
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// by the same amount just used
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cell.give(cellused)
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add_load(cellused WATTS) // add the load used to recharge the cell
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else // no excess, and not enough per-apc
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if((cell.charge WATTS + excess) >= lastused_total) // can we draw enough from cell+grid to cover last usage?
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cell.charge = min(cell.maxcharge, cell.charge + excess JOULES) //recharge with what we can
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add_load(excess) // so draw what we can from the grid
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charging = APC_NOT_CHARGING
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else // not enough power available to run the last tick!
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charging = APC_NOT_CHARGING
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chargecount = 0
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// This turns everything off in the case that there is still a charge left on the battery, just not enough to run the room.
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equipment = autoset(equipment, AUTOSET_FORCE_OFF)
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lighting = autoset(lighting, AUTOSET_FORCE_OFF)
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environ = autoset(environ, AUTOSET_FORCE_OFF)
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// set channels depending on how much charge we have left
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// Allow the APC to operate as normal if the cell can charge
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if(charging && long_term_power < 10)
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long_term_power += 1
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else if(long_term_power > -10)
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long_term_power -= 2
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if(cell.charge <= 0) // zero charge, turn all off
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equipment = autoset(equipment, AUTOSET_FORCE_OFF)
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lighting = autoset(lighting, AUTOSET_FORCE_OFF)
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environ = autoset(environ, AUTOSET_FORCE_OFF)
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alarm_manager.send_alarm(ALARM_POWER)
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else if(cell.percent() < 15 && long_term_power < 0) // <15%, turn off lighting & equipment
|
|
equipment = autoset(equipment, AUTOSET_OFF)
|
|
lighting = autoset(lighting, AUTOSET_OFF)
|
|
environ = autoset(environ, AUTOSET_ON)
|
|
alarm_manager.send_alarm(ALARM_POWER)
|
|
else if(cell.percent() < 30 && long_term_power < 0) // <30%, turn off equipment
|
|
equipment = autoset(equipment, AUTOSET_OFF)
|
|
lighting = autoset(lighting, AUTOSET_ON)
|
|
environ = autoset(environ, AUTOSET_ON)
|
|
alarm_manager.send_alarm(ALARM_POWER)
|
|
else // otherwise all can be on
|
|
equipment = autoset(equipment, AUTOSET_ON)
|
|
lighting = autoset(lighting, AUTOSET_ON)
|
|
environ = autoset(environ, AUTOSET_ON)
|
|
if(cell.percent() > 75)
|
|
alarm_manager.clear_alarm(ALARM_POWER)
|
|
|
|
|
|
// now trickle-charge the cell
|
|
if(chargemode && charging == APC_CHARGING && operating)
|
|
if(excess > 0) // check to make sure we have enough to charge
|
|
// Max charge is capped to % per second constant
|
|
var/ch = min(excess JOULES, cell.maxcharge JOULES)
|
|
add_load(ch WATTS) // Removes the power we're taking from the grid
|
|
cell.give(ch) // actually recharge the cell
|
|
|
|
else
|
|
charging = APC_NOT_CHARGING // stop charging
|
|
chargecount = 0
|
|
|
|
// show cell as fully charged if so
|
|
if(cell.charge >= cell.maxcharge)
|
|
cell.charge = cell.maxcharge
|
|
charging = APC_FULLY_CHARGED
|
|
|
|
if(chargemode)
|
|
if(!charging)
|
|
if(excess > cell.maxcharge*GLOB.CHARGELEVEL)
|
|
chargecount++
|
|
else
|
|
chargecount = 0
|
|
|
|
if(chargecount == 10)
|
|
|
|
chargecount = 0
|
|
charging = APC_CHARGING
|
|
|
|
else // chargemode off
|
|
charging = APC_NOT_CHARGING
|
|
chargecount = 0
|
|
|
|
else // no cell, switch everything off
|
|
|
|
charging = APC_NOT_CHARGING
|
|
chargecount = 0
|
|
equipment = autoset(equipment, AUTOSET_FORCE_OFF)
|
|
lighting = autoset(lighting, AUTOSET_FORCE_OFF)
|
|
environ = autoset(environ, AUTOSET_FORCE_OFF)
|
|
alarm_manager.send_alarm(ALARM_POWER)
|
|
|
|
// update icon & area power if anything changed
|
|
|
|
if(last_lt != lighting || last_eq != equipment || last_en != environ || force_update)
|
|
force_update = 0
|
|
queue_icon_update()
|
|
update()
|
|
else if(last_ch != charging)
|
|
queue_icon_update()
|
|
|
|
/obj/machinery/power/apc/proc/reset(wire)
|
|
switch(wire)
|
|
if(WIRE_IDSCAN)
|
|
locked = TRUE
|
|
if(WIRE_POWER1, WIRE_POWER2)
|
|
if(!wires.is_cut(WIRE_POWER1) && !wires.is_cut(WIRE_POWER2))
|
|
shorted = FALSE
|
|
if(WIRE_AI)
|
|
if(!wires.is_cut(WIRE_AI))
|
|
aidisabled = FALSE
|
|
if(APC_RESET_EMP)
|
|
equipment = APC_CHANNEL_AUTO_ON
|
|
environ = APC_CHANNEL_AUTO_ON
|
|
update_appearance()
|
|
update()
|
|
|
|
// overload all the lights in this APC area
|
|
/obj/machinery/power/apc/proc/overload_lighting()
|
|
if(!operating || shorted)
|
|
return
|
|
if(cell && cell.charge >= 20)
|
|
cell.use(20)
|
|
INVOKE_ASYNC(src, .proc/break_lights)
|
|
|
|
/obj/machinery/power/apc/proc/break_lights()
|
|
for(var/obj/machinery/light/breaked_light in area)
|
|
breaked_light.on = TRUE
|
|
breaked_light.break_light_tube()
|
|
stoplag()
|
|
|
|
/obj/machinery/power/apc/should_atmos_process(datum/gas_mixture/air, exposed_temperature)
|
|
return (exposed_temperature > 2000)
|
|
|
|
/obj/machinery/power/apc/atmos_expose(datum/gas_mixture/air, exposed_temperature)
|
|
take_damage(min(exposed_temperature/100, 10), BURN)
|
|
|
|
/obj/machinery/power/apc/proc/report()
|
|
return "[area.name] : [equipment]/[lighting]/[environ] ([lastused_total]) : [cell? cell.percent() : "N/C"] ([charging])"
|
|
|
|
/*Power module, used for APC construction*/
|
|
/obj/item/electronics/apc
|
|
name = "power control module"
|
|
icon_state = "power_mod"
|
|
desc = "Heavy-duty switching circuits for power control."
|