mirror of
https://github.com/Aurorastation/Aurora.3.git
synced 2025-12-22 16:12:19 +00:00
198 lines
5.9 KiB
Plaintext
198 lines
5.9 KiB
Plaintext
//Beam Datum and effect
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/datum/beam
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var/atom/origin = null
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var/atom/target = null
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var/list/elements = list()
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var/icon/base_icon = null
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var/icon
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var/icon_state = "" //icon state of the main segments of the beam
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var/max_distance = 0
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var/curr_distance = 0
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var/sleep_time = 3
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var/finished = 0
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var/turf/target_oldloc = null
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var/turf/origin_oldloc = null
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var/static_beam = 0
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var/beam_type = /obj/effect/ebeam //must be subtype
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var/timing_id = null
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var/recalculating = FALSE
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/datum/beam/New(beam_origin,beam_target,beam_icon='icons/effects/beam.dmi',beam_icon_state="b_beam",time=50,maxdistance=10,btype = /obj/effect/ebeam,beam_sleep_time=3)
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origin = beam_origin
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origin_oldloc = get_turf(origin)
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target = beam_target
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target_oldloc = get_turf(target)
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sleep_time = beam_sleep_time
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if(origin_oldloc == origin && target_oldloc == target)
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static_beam = TRUE
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max_distance = maxdistance
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curr_distance = get_dist(origin_oldloc, target_oldloc)
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base_icon = new(beam_icon,beam_icon_state)
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icon = beam_icon
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icon_state = beam_icon_state
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beam_type = btype
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if(time != -1)
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addtimer(CALLBACK(src,.proc/End), time)
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/datum/beam/proc/Start()
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Draw()
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recalculate_in(sleep_time)
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/datum/beam/proc/recalculate()
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if(recalculating)
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recalculate_in(sleep_time)
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return
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recalculating = TRUE
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timing_id = null
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var/turf/origin_turf = get_turf(origin)
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var/turf/target_turf = get_turf(target)
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curr_distance = get_dist(origin_turf, target_turf)
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if(origin_turf && target_turf && curr_distance < max_distance && origin_turf.z == target_turf.z)
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if(!static_beam && (origin_turf != origin_oldloc || target_turf != target_oldloc))
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origin_oldloc = origin_turf //so we don't keep checking against their initial positions, leading to endless Reset()+Draw() calls
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target_oldloc = target_turf
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Reset()
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Draw()
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after_calculate()
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recalculating = FALSE
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else
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End()
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/datum/beam/proc/afterDraw()
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return
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/datum/beam/proc/recalculate_in(time)
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timing_id = addtimer(CALLBACK(src, .proc/recalculate), time, TIMER_STOPPABLE | TIMER_UNIQUE | TIMER_NO_HASH_WAIT | TIMER_OVERRIDE)
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/datum/beam/proc/after_calculate()
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if((sleep_time == null) || finished) //Does not automatically recalculate.
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return
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timing_id = addtimer(CALLBACK(src, .proc/recalculate), sleep_time, TIMER_STOPPABLE | TIMER_UNIQUE | TIMER_NO_HASH_WAIT)
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/datum/beam/proc/End(destroy_self = TRUE)
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finished = TRUE
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if(timing_id)
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deltimer(timing_id)
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if(!QDELING(src) && destroy_self)
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qdel(src)
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/datum/beam/proc/Reset()
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for(var/obj/effect/ebeam/B in elements)
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qdel(B)
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elements.Cut()
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/datum/beam/Destroy()
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Reset()
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target = null
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origin = null
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return ..()
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/datum/beam/proc/Draw()
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var/Angle = round(Get_Angle(get_turf(origin), get_turf(target)))
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var/matrix/rot_matrix = matrix()
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rot_matrix.Turn(Angle)
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//Translation vector for origin and target
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var/DX = get_x_translation_vector()
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var/DY = get_y_translation_vector()
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var/N = 0
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var/length = round(sqrt((DX)**2+(DY)**2)) //hypotenuse of the triangle formed by target and origin's displacement
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for(N in 0 to length-1 step world.icon_size)//-1 as we want < not <=, but we want the speed of X in Y to Z and step X
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var/obj/effect/ebeam/X = new beam_type(origin_oldloc)
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X.owner = src
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elements += X
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//Assign icon, for main segments it's base_icon, for the end, it's icon+icon_state
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//cropped by a transparent box of length-N pixel size
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if(N+world.icon_size>length)
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var/icon/II = new(icon, icon_state)
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II.DrawBox(null,1,(length-N),world.icon_size,world.icon_size)
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X.icon = II
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else
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X.icon = base_icon
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X.transform = rot_matrix
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//Calculate pixel offsets (If necessary)
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var/Pixel_x
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var/Pixel_y
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if(DX == 0)
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Pixel_x = 0
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else
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Pixel_x = round(sin(Angle)+world.icon_size*sin(Angle)*(N+16)/world.icon_size)
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if(DY == 0)
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Pixel_y = 0
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else
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Pixel_y = round(cos(Angle)+world.icon_size*cos(Angle)*(N+16)/world.icon_size)
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//Position the effect so the beam is one continous line
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var/a
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if(abs(Pixel_x)>world.icon_size)
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a = Pixel_x > 0 ? round(Pixel_x/world.icon_size) : Ceiling(Pixel_x/world.icon_size)
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X.x += a
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Pixel_x %= world.icon_size
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if(abs(Pixel_y)>world.icon_size)
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a = Pixel_y > 0 ? round(Pixel_y/world.icon_size) : Ceiling(Pixel_y/world.icon_size)
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X.y += a
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Pixel_y %= world.icon_size
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X.pixel_x = Pixel_x
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X.pixel_y = Pixel_y
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CHECK_TICK
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afterDraw()
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/datum/beam/proc/get_x_translation_vector()
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return (world.icon_size*target.x+target.pixel_x)-(world.icon_size*origin.x+origin.pixel_x)
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/datum/beam/proc/get_y_translation_vector()
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return (world.icon_size*target.y+target.pixel_y)-(world.icon_size*origin.y+origin.pixel_y)
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/datum/beam/exploration
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var/obj/item/tethering_device/owner
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/datum/beam/exploration/End()
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owner.active_beams -= target
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owner.untether(target, FALSE)
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return ..()
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/datum/beam/exploration/get_x_translation_vector()
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return (world.icon_size * target_oldloc.x) - (world.icon_size * origin_oldloc.x)
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/datum/beam/exploration/get_y_translation_vector()
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return (world.icon_size * target_oldloc.y) - (world.icon_size * origin_oldloc.y)
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/datum/beam/exploration/afterDraw()
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var/distance = curr_distance / max_distance
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var/set_color = COLOR_GREEN
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if(distance >= 0.8)
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set_color = COLOR_MAROON
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else if(distance >= 0.3)
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set_color = COLOR_BLUE
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else
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set_color = COLOR_GREEN
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for(var/beam in elements)
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var/obj/effect/ebeam/B = beam
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B.color = set_color
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/obj/effect/ebeam
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mouse_opacity = 0
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anchored = 1
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layer = EFFECTS_ABOVE_LIGHTING_LAYER
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blend_mode = BLEND_ADD
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var/datum/beam/owner
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/obj/effect/ebeam/tesla_act()
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return
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/obj/effect/ebeam/Destroy()
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owner = null
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return ..()
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/atom/proc/Beam(atom/BeamTarget,icon_state="b_beam",icon='icons/effects/beam.dmi',time=50, maxdistance=10,beam_type=/obj/effect/ebeam,beam_sleep_time = 3)
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if(time >= INFINITY)
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crash_with("Tried to create beam with infinite time!")
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return null
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var/datum/beam/newbeam = new(src,BeamTarget,icon,icon_state,time,maxdistance,beam_type,beam_sleep_time)
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INVOKE_ASYNC(newbeam, /datum/beam/.proc/Start)
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return newbeam
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