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## About The Pull Request Implements half of this (with some minor changes):  The ultimate goal of this is to split our attack chain in two: - One for non-combat item interactions - Health analyzer scanning - using tools on stuff - surgery - Niche other interactions - One for combat attacking - Item hit thing, item deal damage. - Special effects on attack would go here. This PR begins this by broadining tool act into item interact. Item interact is a catch-all proc ran at the beginning of attack chain, before `pre_attack` and such, that handles the first part of the chain. This allows us to easily catch item interaction and cancel the attack part of the chain by using deliberate bitflag return values, rather than `TRUE` / `FALSE`*. *Because right now, `TRUE` = `cancel attack`, no matter what, which is unclear to people. Instead of moving as much as possible to the new proc in this PR, I started by doing some easy, obvious things. More things can be moved in the future, or technically they don't even need to move in a lot of cases. ## Changelog 🆑 Melbert refactor: Refactored some methods of items interacting with other objects or mobs, such as surgery and health analzyers. Report if anything seems wrong /🆑
470 lines
15 KiB
Plaintext
470 lines
15 KiB
Plaintext
//////////////////////////////
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// POWER MACHINERY BASE CLASS
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//////////////////////////////
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/////////////////////////////
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// Definitions
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/////////////////////////////
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/obj/machinery/power
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name = null
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icon = 'icons/obj/machines/engine/other.dmi'
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anchored = TRUE
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obj_flags = CAN_BE_HIT
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use_power = NO_POWER_USE
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idle_power_usage = 0
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active_power_usage = 0
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///The powernet our machine is connected to.
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var/datum/powernet/powernet
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///Cable layer to which the machine is connected.
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var/cable_layer = CABLE_LAYER_2
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///Can the cable_layer be tweked with a multi tool
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var/can_change_cable_layer = FALSE
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/obj/machinery/power/Initialize(mapload)
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. = ..()
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if(isturf(loc))
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var/turf/turf_loc = loc
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turf_loc.add_blueprints_preround(src)
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/obj/machinery/power/Destroy()
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disconnect_from_network()
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addtimer(CALLBACK(GLOBAL_PROC, GLOBAL_PROC_REF(update_cable_icons_on_turf), get_turf(src)), 3)
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return ..()
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///////////////////////////////
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// General procedures
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//////////////////////////////
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// common helper procs for all power machines
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// All power generation handled in add_avail()
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// Machines should use add_load(), surplus(), avail()
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// Non-machines should use add_delayedload(), delayed_surplus(), newavail()
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//override this if the machine needs special functionality for making wire nodes appear, ie emitters, generators, etc.
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/obj/machinery/power/proc/should_have_node()
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return FALSE
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/obj/machinery/power/examine(mob/user)
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. = ..()
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if(can_change_cable_layer)
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if(!QDELETED(powernet))
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. += span_notice("It's operating on the [lowertext(GLOB.cable_layer_to_name["[cable_layer]"])].")
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else
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. += span_warning("It's disconnected from the [lowertext(GLOB.cable_layer_to_name["[cable_layer]"])].")
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. += span_notice("It's power line can be changed with a [EXAMINE_HINT("multitool")].")
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///does the required checks to see if this machinery layer can be changed
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/obj/machinery/power/proc/cable_layer_change_checks(mob/living/user, obj/item/tool)
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return can_change_cable_layer
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/obj/machinery/power/multitool_act(mob/living/user, obj/item/tool)
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if(!can_change_cable_layer || !cable_layer_change_checks(user, tool))
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return
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var/choice = tgui_input_list(user, "Select Power Line For Operation", "Select Cable Layer", GLOB.cable_name_to_layer)
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if(isnull(choice))
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return
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cable_layer = GLOB.cable_name_to_layer[choice]
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balloon_alert(user, "now operating on the [choice]")
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return ITEM_INTERACT_SUCCESS
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/obj/machinery/power/multitool_act_secondary(mob/living/user, obj/item/tool)
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return multitool_act(user, tool)
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/obj/machinery/power/proc/add_avail(amount)
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if(powernet)
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powernet.newavail += amount
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return TRUE
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else
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return FALSE
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/obj/machinery/power/proc/add_load(amount)
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if(powernet)
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powernet.load += amount
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/obj/machinery/power/proc/surplus()
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if(powernet)
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return clamp(powernet.avail-powernet.load, 0, powernet.avail)
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else
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return 0
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/obj/machinery/power/proc/avail(amount)
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if(powernet)
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return amount ? powernet.avail >= amount : powernet.avail
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else
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return 0
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/obj/machinery/power/proc/add_delayedload(amount)
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if(powernet)
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powernet.delayedload += amount
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/obj/machinery/power/proc/delayed_surplus()
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if(powernet)
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return clamp(powernet.newavail - powernet.delayedload, 0, powernet.newavail)
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else
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return 0
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/obj/machinery/power/proc/newavail()
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if(powernet)
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return powernet.newavail
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else
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return 0
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/obj/machinery/power/proc/disconnect_terminal() // machines without a terminal will just return, no harm no fowl.
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return
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// returns true if the area has power on given channel (or doesn't require power).
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// defaults to power_channel
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/obj/machinery/proc/powered(chan = power_channel, ignore_use_power = FALSE)
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if(!loc)
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return FALSE
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if(!use_power && !ignore_use_power)
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return TRUE
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var/area/A = get_area(src) // make sure it's in an area
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if(!A)
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return FALSE // if not, then not powered
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return A.powered(chan) // return power status of the area
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// increment the power usage stats for an area
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/obj/machinery/proc/use_power(amount, chan = power_channel)
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amount = max(amount * machine_power_rectifier, 0) // make sure we don't use negative power
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var/area/A = get_area(src) // make sure it's in an area
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A?.use_power(amount, chan)
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/**
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* An alternative to 'use_power', this proc directly costs the APC in direct charge, as opposed to being calculated periodically.
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* - Amount: How much power the APC's cell is to be costed.
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*/
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/obj/machinery/proc/directly_use_power(amount)
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var/area/A = get_area(src)
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var/obj/machinery/power/apc/local_apc
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if(!A)
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return FALSE
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local_apc = A.apc
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if(!local_apc)
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return FALSE
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if(!local_apc.cell)
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return FALSE
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local_apc.cell.use(amount)
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return TRUE
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/**
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* Attempts to draw power directly from the APC's Powernet rather than the APC's battery. For high-draw machines, like the cell charger
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*
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* Checks the surplus power on the APC's powernet, and compares to the requested amount. If the requested amount is available, this proc
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* will add the amount to the APC's usage and return that amount. Otherwise, this proc will return FALSE.
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* If the take_any var arg is set to true, this proc will use and return any surplus that is under the requested amount, assuming that
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* the surplus is above zero.
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* Args:
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* - amount, the amount of power requested from the Powernet. In standard loosely-defined SS13 power units.
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* - take_any, a bool of whether any amount of power is acceptable, instead of all or nothing. Defaults to FALSE
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*/
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/obj/machinery/proc/use_power_from_net(amount, take_any = FALSE)
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if(amount <= 0) //just in case
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return FALSE
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var/area/home = get_area(src)
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if(!home)
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return FALSE //apparently space isn't an area
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if(!home.requires_power)
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return amount //Shuttles get free power, don't ask why
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var/obj/machinery/power/apc/local_apc = home.apc
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if(!local_apc)
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return FALSE
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var/surplus = local_apc.surplus()
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if(surplus <= 0) //I don't know if powernet surplus can ever end up negative, but I'm just gonna failsafe it
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return FALSE
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if(surplus < amount)
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if(!take_any)
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return FALSE
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amount = surplus
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local_apc.add_load(amount)
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return amount
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/obj/machinery/proc/addStaticPower(value, powerchannel)
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var/area/A = get_area(src)
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A?.addStaticPower(value, powerchannel)
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/obj/machinery/proc/removeStaticPower(value, powerchannel)
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addStaticPower(-value, powerchannel)
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/**
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* Called whenever the power settings of the containing area change
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*
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* by default, check equipment channel & set flag, can override if needed
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*
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* Returns TRUE if the NOPOWER flag was toggled
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*/
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/obj/machinery/proc/power_change()
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SIGNAL_HANDLER
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SHOULD_CALL_PARENT(TRUE)
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if(machine_stat & BROKEN)
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update_appearance()
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return
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var/initial_stat = machine_stat
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if(powered(power_channel))
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set_machine_stat(machine_stat & ~NOPOWER)
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if(initial_stat & NOPOWER)
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SEND_SIGNAL(src, COMSIG_MACHINERY_POWER_RESTORED)
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. = TRUE
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else
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set_machine_stat(machine_stat | NOPOWER)
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if(!(initial_stat & NOPOWER))
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SEND_SIGNAL(src, COMSIG_MACHINERY_POWER_LOST)
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. = TRUE
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if(appearance_power_state != (machine_stat & NOPOWER))
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update_appearance()
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// Saves like 300ms of init by not duping calls in the above proc
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/obj/machinery/update_appearance(updates)
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. = ..()
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appearance_power_state = machine_stat & NOPOWER
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// connect the machine to a powernet if a node cable or a terminal is present on the turf
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/obj/machinery/power/proc/connect_to_network()
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var/turf/T = src.loc
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if(!T || !istype(T))
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return FALSE
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var/obj/structure/cable/C = T.get_cable_node(cable_layer) //check if we have a node cable on the machine turf, the first found is picked
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if(!C || !C.powernet)
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var/obj/machinery/power/terminal/term = locate(/obj/machinery/power/terminal) in T
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if(!term || !term.powernet)
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return FALSE
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else
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term.powernet.add_machine(src)
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return TRUE
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C.powernet.add_machine(src)
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return TRUE
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// remove and disconnect the machine from its current powernet
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/obj/machinery/power/proc/disconnect_from_network()
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if(!powernet)
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return FALSE
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powernet.remove_machine(src)
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return TRUE
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// attach a wire to a power machine - leads from the turf you are standing on
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//almost never called, overwritten by all power machines but terminal and generator
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/obj/machinery/power/attackby(obj/item/W, mob/user, params)
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if(istype(W, /obj/item/stack/cable_coil))
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var/obj/item/stack/cable_coil/coil = W
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var/turf/T = user.loc
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if(T.underfloor_accessibility < UNDERFLOOR_INTERACTABLE || !isfloorturf(T))
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return
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if(get_dist(src, user) > 1)
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return
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coil.place_turf(T, user)
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else
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return ..()
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///////////////////////////////////////////
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// Powernet handling helpers
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//////////////////////////////////////////
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//returns all the cables WITHOUT a powernet in neighbors turfs,
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//pointing towards the turf the machine is located at
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/obj/machinery/power/proc/get_connections()
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. = list()
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var/turf/T
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for(var/card in GLOB.cardinals)
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T = get_step(loc,card)
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for(var/obj/structure/cable/C in T)
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if(C.powernet)
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continue
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. += C
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return .
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//returns all the cables in neighbors turfs,
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//pointing towards the turf the machine is located at
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/obj/machinery/power/proc/get_marked_connections()
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. = list()
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var/turf/T
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for(var/card in GLOB.cardinals)
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T = get_step(loc,card)
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for(var/obj/structure/cable/C in T)
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. += C
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return .
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//returns all the NODES (O-X) cables WITHOUT a powernet in the turf the machine is located at
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/obj/machinery/power/proc/get_indirect_connections()
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. = list()
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for(var/obj/structure/cable/C in loc)
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if(C.powernet)
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continue
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. += C
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return .
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/proc/update_cable_icons_on_turf(turf/T)
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for(var/obj/structure/cable/C in T.contents)
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C.update_appearance()
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///////////////////////////////////////////
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// GLOBAL PROCS for powernets handling
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//////////////////////////////////////////
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///remove the old powernet and replace it with a new one throughout the network.
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/proc/propagate_network(obj/structure/cable/C, datum/powernet/PN, skip_assigned_powernets = FALSE)
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var/list/found_machines = list()
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var/list/cables = list()
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var/index = 1
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var/obj/structure/cable/working_cable
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cables[C] = TRUE //associated list for performance reasons
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while(index <= length(cables))
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working_cable = cables[index]
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index++
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var/list/connections = working_cable.get_cable_connections(skip_assigned_powernets)
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for(var/obj/structure/cable/cable_entry in connections)
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if(!cables[cable_entry]) //Since it's an associated list, we can just do an access and check it's null before adding; prevents duplicate entries
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cables[cable_entry] = TRUE
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for(var/obj/structure/cable/cable_entry in cables)
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PN.add_cable(cable_entry)
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found_machines += cable_entry.get_machine_connections(skip_assigned_powernets)
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//now that the powernet is set, connect found machines to it
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for(var/obj/machinery/power/PM in found_machines)
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if(!PM.connect_to_network()) //couldn't find a node on its turf...
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PM.disconnect_from_network() //... so disconnect if already on a powernet
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//Merge two powernets, the bigger (in cable length term) absorbing the other
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/proc/merge_powernets(datum/powernet/net1, datum/powernet/net2)
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if(!net1 || !net2) //if one of the powernet doesn't exist, return
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return
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if(net1 == net2) //don't merge same powernets
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return
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//We assume net1 is larger. If net2 is in fact larger we are just going to make them switch places to reduce on code.
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if(net1.cables.len < net2.cables.len) //net2 is larger than net1. Let's switch them around
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var/temp = net1
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net1 = net2
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net2 = temp
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//merge net2 into net1
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for(var/obj/structure/cable/Cable in net2.cables) //merge cables
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net1.add_cable(Cable)
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for(var/obj/machinery/power/Node in net2.nodes) //merge power machines
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if(!Node.connect_to_network())
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Node.disconnect_from_network() //if somehow we can't connect the machine to the new powernet, disconnect it from the old nonetheless
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return net1
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/// Extracts the powernet and cell of the provided power source
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/proc/get_powernet_info_from_source(power_source)
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var/area/source_area
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if (isarea(power_source))
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source_area = power_source
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power_source = source_area.apc
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else if (istype(power_source, /obj/structure/cable))
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var/obj/structure/cable/Cable = power_source
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power_source = Cable.powernet
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var/datum/powernet/PN
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var/obj/item/stock_parts/cell/cell
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if (istype(power_source, /datum/powernet))
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PN = power_source
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else if (istype(power_source, /obj/item/stock_parts/cell))
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cell = power_source
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else if (istype(power_source, /obj/machinery/power/apc))
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var/obj/machinery/power/apc/apc = power_source
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cell = apc.cell
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if (apc.terminal)
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PN = apc.terminal.powernet
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else
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return FALSE
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if (!cell && !PN)
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return
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return list("powernet" = PN, "cell" = cell)
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//Determines how strong could be shock, deals damage to mob, uses power.
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//M is a mob who touched wire/whatever
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//power_source is a source of electricity, can be power cell, area, apc, cable, powernet or null
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//source is an object caused electrocuting (airlock, grille, etc)
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//siemens_coeff - layman's terms, conductivity
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//dist_check - set to only shock mobs within 1 of source (vendors, airlocks, etc.)
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//No animations will be performed by this proc.
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/proc/electrocute_mob(mob/living/carbon/victim, power_source, obj/source, siemens_coeff = 1, dist_check = FALSE)
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if(!istype(victim) || ismecha(victim.loc))
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return FALSE //feckin mechs are dumb
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if(dist_check)
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if(!in_range(source, victim))
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return FALSE
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if(victim.wearing_shock_proof_gloves())
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SEND_SIGNAL(victim, COMSIG_LIVING_SHOCK_PREVENTED, power_source, source, siemens_coeff, dist_check)
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return FALSE //to avoid spamming with insulated gloves on
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var/list/powernet_info = get_powernet_info_from_source(power_source)
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if (!powernet_info)
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return FALSE
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var/datum/powernet/PN = powernet_info["powernet"]
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var/obj/item/stock_parts/cell/cell = powernet_info["cell"]
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var/PN_damage = 0
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var/cell_damage = 0
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if (PN)
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PN_damage = PN.get_electrocute_damage()
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if (cell)
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cell_damage = cell.get_electrocute_damage()
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var/shock_damage = 0
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if (PN_damage >= cell_damage)
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power_source = PN
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shock_damage = PN_damage
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else
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power_source = cell
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shock_damage = cell_damage
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var/drained_hp = victim.electrocute_act(shock_damage, source, siemens_coeff) //zzzzzzap!
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log_combat(source, victim, "electrocuted")
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var/drained_energy = drained_hp*20
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if (isarea(power_source))
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var/area/source_area = power_source
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source_area.use_power(drained_energy WATTS)
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else if (istype(power_source, /datum/powernet))
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var/drained_power = drained_energy WATTS //convert from "joules" to "watts"
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PN.delayedload += (min(drained_power, max(PN.newavail - PN.delayedload, 0)))
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else if (istype(power_source, /obj/item/stock_parts/cell))
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cell.use(drained_energy)
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return drained_energy
|
|
|
|
////////////////////////////////////////////////
|
|
// Misc.
|
|
///////////////////////////////////////////////
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|
|
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// return a cable able connect to machinery on layer if there's one on the turf, null if there isn't one
|
|
/turf/proc/get_cable_node(cable_layer = CABLE_LAYER_ALL)
|
|
if(!can_have_cabling())
|
|
return null
|
|
for(var/obj/structure/cable/C in src)
|
|
if(C.cable_layer & cable_layer)
|
|
C.update_appearance() // I hate this. it's here because update_icon_state SCANS nearby turfs for objects to connect to. Wastes cpu time
|
|
return C
|
|
return null
|