mirror of
https://github.com/yogstation13/Yogstation.git
synced 2025-02-26 09:04:50 +00:00
458 lines
15 KiB
Plaintext
458 lines
15 KiB
Plaintext
///////////////////////////////////////////////////////////////
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//SS13 Optimized Map loader
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//////////////////////////////////////////////////////////////
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//global datum that will preload variables on atoms instanciation
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GLOBAL_VAR_INIT(use_preloader, FALSE)
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GLOBAL_DATUM_INIT(_preloader, /dmm_suite/preloader, new)
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/dmm_suite
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// /"([a-zA-Z]+)" = \(((?:.|\n)*?)\)\n(?!\t)|\((\d+),(\d+),(\d+)\) = \{"([a-zA-Z\n]*)"\}/g
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var/static/regex/dmmRegex = new/regex({""(\[a-zA-Z]+)" = \\(((?:.|\n)*?)\\)\n(?!\t)|\\((\\d+),(\\d+),(\\d+)\\) = \\{"(\[a-zA-Z\n]*)"\\}"}, "g")
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// /^[\s\n]+"?|"?[\s\n]+$|^"|"$/g
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var/static/regex/trimQuotesRegex = new/regex({"^\[\\s\n]+"?|"?\[\\s\n]+$|^"|"$"}, "g")
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// /^[\s\n]+|[\s\n]+$/
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var/static/regex/trimRegex = new/regex("^\[\\s\n]+|\[\\s\n]+$", "g")
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var/static/list/modelCache = list()
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var/static/space_key
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#ifdef TESTING
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var/static/turfsSkipped
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#endif
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/**
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* Construct the model map and control the loading process
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*
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* WORKING :
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*
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* 1) Makes an associative mapping of model_keys with model
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* e.g aa = /turf/unsimulated/wall{icon_state = "rock"}
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* 2) Read the map line by line, parsing the result (using parse_grid)
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*
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*/
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/dmm_suite/load_map(dmm_file as file, x_offset as num, y_offset as num, z_offset as num, cropMap as num, measureOnly as num, no_changeturf as num)
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//How I wish for RAII
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Master.StartLoadingMap()
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space_key = null
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#ifdef TESTING
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turfsSkipped = 0
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#endif
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. = load_map_impl(dmm_file, x_offset, y_offset, z_offset, cropMap, measureOnly, no_changeturf)
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#ifdef TESTING
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if(turfsSkipped)
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testing("Skipped loading [turfsSkipped] default turfs")
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#endif
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Master.StopLoadingMap()
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/dmm_suite/proc/load_map_impl(dmm_file, x_offset, y_offset, z_offset, cropMap, measureOnly, no_changeturf)
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var/tfile = dmm_file//the map file we're creating
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if(isfile(tfile))
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tfile = file2text(tfile)
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if(!x_offset)
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x_offset = 1
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if(!y_offset)
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y_offset = 1
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if(!z_offset)
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z_offset = world.maxz + 1
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var/list/bounds = list(1.#INF, 1.#INF, 1.#INF, -1.#INF, -1.#INF, -1.#INF)
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var/list/grid_models = list()
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var/key_len = 0
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var/stored_index = 1
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while(dmmRegex.Find(tfile, stored_index))
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stored_index = dmmRegex.next
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// "aa" = (/type{vars=blah})
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if(dmmRegex.group[1]) // Model
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var/key = dmmRegex.group[1]
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if(grid_models[key]) // Duplicate model keys are ignored in DMMs
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continue
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if(key_len != length(key))
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if(!key_len)
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key_len = length(key)
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else
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throw EXCEPTION("Inconsistant key length in DMM")
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if(!measureOnly)
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grid_models[key] = dmmRegex.group[2]
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// (1,1,1) = {"aaaaaaaaaaaaaaaaaaaaaaaaaaaaaa"}
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else if(dmmRegex.group[3]) // Coords
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if(!key_len)
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throw EXCEPTION("Coords before model definition in DMM")
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var/xcrdStart = text2num(dmmRegex.group[3]) + x_offset - 1
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//position of the currently processed square
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var/xcrd
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var/ycrd = text2num(dmmRegex.group[4]) + y_offset - 1
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var/zcrd = text2num(dmmRegex.group[5]) + z_offset - 1
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var/zexpansion = zcrd > world.maxz
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if(zexpansion)
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if(cropMap)
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continue
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else
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world.maxz = zcrd //create a new z_level if needed
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if(!no_changeturf)
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WARNING("Z-level expansion occurred without no_changeturf set, this may cause problems when /turf/AfterChange is called")
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bounds[MAP_MINX] = min(bounds[MAP_MINX], xcrdStart)
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bounds[MAP_MINZ] = min(bounds[MAP_MINZ], zcrd)
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bounds[MAP_MAXZ] = max(bounds[MAP_MAXZ], zcrd)
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var/list/gridLines = splittext(dmmRegex.group[6], "\n")
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var/leadingBlanks = 0
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while(leadingBlanks < gridLines.len && gridLines[++leadingBlanks] == "")
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if(leadingBlanks > 1)
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gridLines.Cut(1, leadingBlanks) // Remove all leading blank lines.
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if(!gridLines.len) // Skip it if only blank lines exist.
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continue
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if(gridLines.len && gridLines[gridLines.len] == "")
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gridLines.Cut(gridLines.len) // Remove only one blank line at the end.
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bounds[MAP_MINY] = min(bounds[MAP_MINY], ycrd)
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ycrd += gridLines.len - 1 // Start at the top and work down
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if(!cropMap && ycrd > world.maxy)
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if(!measureOnly)
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world.maxy = ycrd // Expand Y here. X is expanded in the loop below
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bounds[MAP_MAXY] = max(bounds[MAP_MAXY], ycrd)
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else
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bounds[MAP_MAXY] = max(bounds[MAP_MAXY], min(ycrd, world.maxy))
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var/maxx = xcrdStart
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if(measureOnly)
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for(var/line in gridLines)
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maxx = max(maxx, xcrdStart + length(line) / key_len - 1)
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else
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for(var/line in gridLines)
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if(ycrd <= world.maxy && ycrd >= 1)
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xcrd = xcrdStart
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for(var/tpos = 1 to length(line) - key_len + 1 step key_len)
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if(xcrd > world.maxx)
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if(cropMap)
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break
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else
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world.maxx = xcrd
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if(xcrd >= 1)
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var/model_key = copytext(line, tpos, tpos + key_len)
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var/no_afterchange = no_changeturf || zexpansion
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if(!no_afterchange || (model_key != space_key))
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if(!grid_models[model_key])
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throw EXCEPTION("Undefined model key in DMM.")
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parse_grid(grid_models[model_key], model_key, xcrd, ycrd, zcrd, no_changeturf || zexpansion)
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#ifdef TESTING
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else
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++turfsSkipped
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#endif
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CHECK_TICK
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maxx = max(maxx, xcrd)
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++xcrd
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--ycrd
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bounds[MAP_MAXX] = max(bounds[MAP_MAXX], cropMap ? min(maxx, world.maxx) : maxx)
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CHECK_TICK
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if(bounds[1] == 1.#INF) // Shouldn't need to check every item
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return null
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else
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if(!measureOnly)
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if(!no_changeturf)
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for(var/t in block(locate(bounds[MAP_MINX], bounds[MAP_MINY], bounds[MAP_MINZ]), locate(bounds[MAP_MAXX], bounds[MAP_MAXY], bounds[MAP_MAXZ])))
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var/turf/T = t
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//we do this after we load everything in. if we don't; we'll have weird atmos bugs regarding atmos adjacent turfs
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T.AfterChange(TRUE)
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return bounds
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/**
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* Fill a given tile with its area/turf/objects/mobs
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* Variable model is one full map line (e.g /turf/unsimulated/wall{icon_state = "rock"},/area/mine/explored)
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*
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* WORKING :
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*
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* 1) Read the model string, member by member (delimiter is ',')
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*
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* 2) Get the path of the atom and store it into a list
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*
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* 3) a) Check if the member has variables (text within '{' and '}')
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*
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* 3) b) Construct an associative list with found variables, if any (the atom index in members is the same as its variables in members_attributes)
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*
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* 4) Instanciates the atom with its variables
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*
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*/
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/dmm_suite/proc/parse_grid(model as text, model_key as text, xcrd as num,ycrd as num,zcrd as num, no_changeturf as num)
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/*Method parse_grid()
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- Accepts a text string containing a comma separated list of type paths of the
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same construction as those contained in a .dmm file, and instantiates them.
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*/
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var/list/members //will contain all members (paths) in model (in our example : /turf/unsimulated/wall and /area/mine/explored)
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var/list/members_attributes //will contain lists filled with corresponding variables, if any (in our example : list(icon_state = "rock") and list())
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var/list/cached = modelCache[model]
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var/index
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if(cached)
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members = cached[1]
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members_attributes = cached[2]
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else
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/////////////////////////////////////////////////////////
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//Constructing members and corresponding variables lists
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////////////////////////////////////////////////////////
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members = list()
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members_attributes = list()
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index = 1
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var/old_position = 1
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var/dpos
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do
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//finding next member (e.g /turf/unsimulated/wall{icon_state = "rock"} or /area/mine/explored)
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dpos = find_next_delimiter_position(model, old_position, ",", "{", "}") //find next delimiter (comma here) that's not within {...}
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var/full_def = trim_text(copytext(model, old_position, dpos)) //full definition, e.g : /obj/foo/bar{variables=derp}
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var/variables_start = findtext(full_def, "{")
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var/atom_def = text2path(trim_text(copytext(full_def, 1, variables_start))) //path definition, e.g /obj/foo/bar
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old_position = dpos + 1
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if(!atom_def) // Skip the item if the path does not exist. Fix your crap, mappers!
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continue
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members.Add(atom_def)
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//transform the variables in text format into a list (e.g {var1="derp"; var2; var3=7} => list(var1="derp", var2, var3=7))
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var/list/fields = list()
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if(variables_start)//if there's any variable
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full_def = copytext(full_def,variables_start+1,length(full_def))//removing the last '}'
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fields = readlist(full_def, ";")
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if(fields.len)
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if(!trim(fields[fields.len]))
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--fields.len
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for(var/I in fields)
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var/value = fields[I]
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if(istext(value))
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fields[I] = apply_text_macros(value)
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//then fill the members_attributes list with the corresponding variables
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members_attributes.len++
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members_attributes[index++] = fields
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CHECK_TICK
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while(dpos != 0)
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//check and see if we can just skip this turf
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//So you don't have to understand this horrid statement, we can do this if
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// 1. no_changeturf is set
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// 2. the space_key isn't set yet
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// 3. there are exactly 2 members
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// 4. with no attributes
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// 5. and the members are world.turf and world.area
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// Basically, if we find an entry like this: "XXX" = (/turf/default, /area/default)
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// We can skip calling this proc every time we see XXX
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if(no_changeturf && !space_key && members.len == 2 && members_attributes.len == 2 && length(members_attributes[1]) == 0 && length(members_attributes[2]) == 0 && (world.area in members) && (world.turf in members))
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space_key = model_key
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return
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modelCache[model] = list(members, members_attributes)
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////////////////
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//Instanciation
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////////////////
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//The next part of the code assumes there's ALWAYS an /area AND a /turf on a given tile
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var/turf/crds = locate(xcrd,ycrd,zcrd)
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//first instance the /area and remove it from the members list
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index = members.len
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if(members[index] != /area/template_noop)
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var/atom/instance
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GLOB._preloader.setup(members_attributes[index])//preloader for assigning set variables on atom creation
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var/atype = members[index]
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for(var/area/A in world)
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if(A.type == atype)
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instance = A
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break
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if(!instance)
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instance = new atype(null)
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if(crds)
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instance.contents.Add(crds)
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if(GLOB.use_preloader && instance)
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GLOB._preloader.load(instance)
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//then instance the /turf and, if multiple tiles are presents, simulates the DMM underlays piling effect
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var/first_turf_index = 1
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while(!ispath(members[first_turf_index],/turf)) //find first /turf object in members
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first_turf_index++
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//turn off base new Initialization until the whole thing is loaded
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SSatoms.map_loader_begin()
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//instanciate the first /turf
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var/turf/T
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if(members[first_turf_index] != /turf/template_noop)
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T = instance_atom(members[first_turf_index],members_attributes[first_turf_index],crds,no_changeturf)
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if(T)
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//if others /turf are presents, simulates the underlays piling effect
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index = first_turf_index + 1
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while(index <= members.len - 1) // Last item is an /area
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var/underlay = T.appearance
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T = instance_atom(members[index],members_attributes[index],crds,no_changeturf)//instance new turf
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T.underlays += underlay
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index++
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//finally instance all remainings objects/mobs
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for(index in 1 to first_turf_index-1)
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instance_atom(members[index],members_attributes[index],crds,no_changeturf)
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//Restore initialization to the previous value
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SSatoms.map_loader_stop()
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////////////////
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//Helpers procs
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////////////////
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//Instance an atom at (x,y,z) and gives it the variables in attributes
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/dmm_suite/proc/instance_atom(path,list/attributes, turf/crds, no_changeturf)
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GLOB._preloader.setup(attributes, path)
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if(crds)
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if(!no_changeturf && ispath(path, /turf))
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. = crds.ChangeTurf(path, TRUE)
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else
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. = create_atom(path, crds)//first preloader pass
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if(GLOB.use_preloader && .)//second preloader pass, for those atoms that don't ..() in New()
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GLOB._preloader.load(.)
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//custom CHECK_TICK here because we don't want things created while we're sleeping to not initialize
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if(TICK_CHECK)
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SSatoms.map_loader_stop()
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stoplag()
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SSatoms.map_loader_begin()
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/dmm_suite/proc/create_atom(path, crds)
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set waitfor = FALSE
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. = new path (crds)
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//text trimming (both directions) helper proc
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//optionally removes quotes before and after the text (for variable name)
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/dmm_suite/proc/trim_text(what as text,trim_quotes=0)
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if(trim_quotes)
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return trimQuotesRegex.Replace(what, "")
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else
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return trimRegex.Replace(what, "")
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//find the position of the next delimiter,skipping whatever is comprised between opening_escape and closing_escape
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//returns 0 if reached the last delimiter
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/dmm_suite/proc/find_next_delimiter_position(text as text,initial_position as num, delimiter=",",opening_escape="\"",closing_escape="\"")
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var/position = initial_position
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var/next_delimiter = findtext(text,delimiter,position,0)
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var/next_opening = findtext(text,opening_escape,position,0)
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while((next_opening != 0) && (next_opening < next_delimiter))
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position = findtext(text,closing_escape,next_opening + 1,0)+1
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next_delimiter = findtext(text,delimiter,position,0)
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next_opening = findtext(text,opening_escape,position,0)
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return next_delimiter
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//build a list from variables in text form (e.g {var1="derp"; var2; var3=7} => list(var1="derp", var2, var3=7))
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//return the filled list
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/dmm_suite/proc/readlist(text as text, delimiter=",")
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var/list/to_return = list()
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var/position
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var/old_position = 1
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do
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//find next delimiter that is not within "..."
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position = find_next_delimiter_position(text,old_position,delimiter)
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//check if this is a simple variable (as in list(var1, var2)) or an associative one (as in list(var1="foo",var2=7))
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var/equal_position = findtext(text,"=",old_position, position)
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var/trim_left = trim_text(copytext(text,old_position,(equal_position ? equal_position : position)),1)//the name of the variable, must trim quotes to build a BYOND compliant associatives list
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old_position = position + 1
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if(equal_position)//associative var, so do the association
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var/trim_right = trim_text(copytext(text,equal_position+1,position))//the content of the variable
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//Check for string
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if(findtext(trim_right,"\"",1,2))
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trim_right = copytext(trim_right,2,findtext(trim_right,"\"",3,0))
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//Check for number
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else if(isnum(text2num(trim_right)))
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trim_right = text2num(trim_right)
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//Check for null
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else if(trim_right == "null")
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trim_right = null
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//Check for list
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else if(copytext(trim_right,1,5) == "list")
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trim_right = readlist(copytext(trim_right,6,length(trim_right)))
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//Check for file
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else if(copytext(trim_right,1,2) == "'")
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trim_right = file(copytext(trim_right,2,length(trim_right)))
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//Check for path
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else if(ispath(text2path(trim_right)))
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trim_right = text2path(trim_right)
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to_return[trim_left] = trim_right
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else//simple var
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to_return[trim_left] = null
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while(position != 0)
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return to_return
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/dmm_suite/Destroy()
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..()
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return QDEL_HINT_HARDDEL_NOW
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//////////////////
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//Preloader datum
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//////////////////
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/dmm_suite/preloader
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parent_type = /datum
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var/list/attributes
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var/target_path
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/dmm_suite/preloader/proc/setup(list/the_attributes, path)
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if(the_attributes.len)
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GLOB.use_preloader = TRUE
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attributes = the_attributes
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target_path = path
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/dmm_suite/preloader/proc/load(atom/what)
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for(var/attribute in attributes)
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var/value = attributes[attribute]
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if(islist(value))
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value = deepCopyList(value)
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what.vars[attribute] = value
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GLOB.use_preloader = FALSE
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/area/template_noop
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name = "Area Passthrough"
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/turf/template_noop
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name = "Turf Passthrough"
|