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https://gitlab.com/gaelysam/mapgen_rivers.git
synced 2024-12-29 12:20:41 +01:00
Pre-generation: reverse X and Y directions everywhere
to make directions compatible with the mapgen code
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@ -51,12 +51,9 @@ local function generate()
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local mfloor = math.floor
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local mmin, mmax = math.min, math.max
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local offset_x, offset_y = twist(model.dirs, model.rivers, 5)
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local dirs = model.dirs
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local converter = {2, 1, 4, 3, [0]=0}
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for i=1, size.x*size.y do
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offset_x[i] = mmin(mmax(offset_x[i]*256, -128), 127)
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offset_y[i] = mmin(mmax(offset_y[i]*256, -128), 127)
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dirs[i] = converter[dirs[i]] -- TODO Fix this
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end
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mapgen_rivers.write_map('dem', model.dem, 2)
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@ -46,13 +46,13 @@ local function erode(model, time)
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new_elev = lakes[iw]
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break
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elseif d == 1 then
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inext = iw+1
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elseif d == 2 then
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inext = iw+X
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elseif d == 2 then
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inext = iw+1
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elseif d == 3 then
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inext = iw-1
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elseif d == 4 then
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inext = iw-X
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elseif d == 4 then
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inext = iw-1
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end
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local etime = erosion_time[iw]
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@ -56,10 +56,10 @@ local function flow_routing(dem, dirs, lakes, method)
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for x=1, X do
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local zi = dem[i]
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local plist = {
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x<X and mmax(zi-dem[i+1], 0) or 0, -- Eastward
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y<Y and mmax(zi-dem[i+X], 0) or 0, -- Southward
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x>1 and mmax(zi-dem[i-1], 0) or 0, -- Westward
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x<X and mmax(zi-dem[i+1], 0) or 0, -- Eastward
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y>1 and mmax(zi-dem[i-X], 0) or 0, -- Northward
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x>1 and mmax(zi-dem[i-1], 0) or 0, -- Westward
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}
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local d = flow_local(plist)
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@ -67,13 +67,13 @@ local function flow_routing(dem, dirs, lakes, method)
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if d == 0 then
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singular[#singular+1] = i
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elseif d == 1 then
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dirs2[i+1] = dirs2[i+1] + 1
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dirs2[i+X] = dirs2[i+X] + 1
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elseif d == 2 then
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dirs2[i+X] = dirs2[i+X] + 2
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dirs2[i+1] = dirs2[i+1] + 2
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elseif d == 3 then
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dirs2[i-1] = dirs2[i-1] + 4
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dirs2[i-X] = dirs2[i-X] + 4
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elseif d == 4 then
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dirs2[i-X] = dirs2[i-X] + 8
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dirs2[i-1] = dirs2[i-1] + 8
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end
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i = i + 1
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end
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@ -128,44 +128,44 @@ local function flow_routing(dem, dirs, lakes, method)
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basin_id[i] = ib
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local d = dirs2[i]
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if d >= 8 then -- River coming from South
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if d >= 8 then -- River coming from East
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d = d - 8
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queue[#queue+1] = i+X
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--tinsert(queue, i+X)
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elseif i <= X*(Y-1) then
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add_link(i, i+X, ib, true)
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else
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add_link(i, 0, ib, true)
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end
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if d >= 4 then -- River coming from East
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d = d - 4
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queue[#queue+1] = i+1
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--tinsert(queue, i+1)
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--tinsert(queue, i+X)
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elseif i%X > 0 then
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add_link(i, i+1, ib, false)
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else
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add_link(i, 0, ib, false)
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end
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if d >= 2 then -- River coming from North
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d = d - 2
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queue[#queue+1] = i-X
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--tinsert(queue, i-X)
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elseif i > X then
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add_link(i, i-X, ib, true)
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if d >= 4 then -- River coming from South
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d = d - 4
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queue[#queue+1] = i+X
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--tinsert(queue, i+1)
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elseif i <= X*(Y-1) then
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add_link(i, i+X, ib, true)
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else
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add_link(i, 0, ib, true)
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end
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if d >= 1 then -- River coming from West
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if d >= 2 then -- River coming from West
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d = d - 2
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queue[#queue+1] = i-1
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--tinsert(queue, i-1)
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--tinsert(queue, i-X)
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elseif i%X ~= 1 then
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add_link(i, i-1, ib, false)
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else
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add_link(i, 0, ib, false)
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end
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if d >= 1 then -- River coming from North
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queue[#queue+1] = i-X
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--tinsert(queue, i-1)
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elseif i > X then
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add_link(i, i-X, ib, true)
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else
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add_link(i, 0, ib, true)
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end
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end
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end
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dirs2 = nil
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@ -291,7 +291,7 @@ local function flow_routing(dem, dirs, lakes, method)
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--print('Flow '..b2..' into '..b1)
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-- Make b2 flow into b1
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local i = bound.i
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local dir = bound.is_y and 4 or 3
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local dir = bound.is_y and 3 or 4
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--print(basin_id[i])
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if basin_id[i] ~= b2 then
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dir = dir - 2
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@ -308,13 +308,13 @@ local function flow_routing(dem, dirs, lakes, method)
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repeat
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dir, dirs[i] = dirs[i], dir
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if dir == 1 then
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i = i + 1
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elseif dir == 2 then
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i = i + X
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elseif dir == 2 then
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i = i + 1
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elseif dir == 3 then
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i = i - 1
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elseif dir == 4 then
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i = i - X
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elseif dir == 4 then
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i = i - 1
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end
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dir = reverse[dir]
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until dir == 0
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@ -349,13 +349,13 @@ local function accumulate(dirs, waterq)
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local i2
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local dir = dirs[i1]
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if dir == 1 then
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i2 = i1+1
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elseif dir == 2 then
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i2 = i1+X
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elseif dir == 2 then
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i2 = i1+1
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elseif dir == 3 then
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i2 = i1-1
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elseif dir == 4 then
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i2 = i1-X
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elseif dir == 4 then
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i2 = i1-1
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end
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if i2 then
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ndonors[i2] = ndonors[i2] + 1
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@ -371,13 +371,13 @@ local function accumulate(dirs, waterq)
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--print(dir)
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while dir > 0 do
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if dir == 1 then
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i2 = i2 + 1
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elseif dir == 2 then
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i2 = i2 + X
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elseif dir == 2 then
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i2 = i2 + 1
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elseif dir == 3 then
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i2 = i2 - 1
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elseif dir == 4 then
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i2 = i2 - X
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elseif dir == 4 then
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i2 = i2 - 1
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end
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--print('Incrementing '..i2)
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w = w + waterq[i2]
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@ -12,14 +12,14 @@ local function get_bounds(dirs, rivers)
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for i=1, X*Y do
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local dir = dirs[i]
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local river = rivers[i]
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if dir == 1 then -- East (+X)
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bounds_x[i] = river
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elseif dir == 2 then -- South (+Y)
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if dir == 1 then -- South (+Y)
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bounds_y[i] = river
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elseif dir == 3 then -- West (-X)
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bounds_x[i-1] = river
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elseif dir == 4 then
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elseif dir == 2 then -- East (+X)
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bounds_x[i] = river
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elseif dir == 3 then -- North (-Y)
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bounds_y[i-X] = river
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elseif dir == 4 then -- West (-X)
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bounds_x[i-1] = river
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end
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end
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