mirror of
https://github.com/tanema/light_world.lua.git
synced 2024-12-24 20:24:19 +00:00
667 lines
18 KiB
Lua
667 lines
18 KiB
Lua
local _PACKAGE = (...):match("^(.+)[%./][^%./]+") or ""
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local class = require(_PACKAGE.."/class")
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local height_map_conv = require(_PACKAGE..'/height_map_conv')
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local body = class()
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body.glowShader = love.graphics.newShader(_PACKAGE.."/shaders/glow.glsl")
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body.materialShader = love.graphics.newShader(_PACKAGE.."/shaders/material.glsl")
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function body:init(world, id, type, ...)
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local args = {...}
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self.id = id
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self.type = type
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self.normal = nil
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self.material = nil
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self.glow = nil
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self.world = world
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self.shine = true
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self.red = 0
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self.green = 0
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self.blue = 0
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self.alpha = 1.0
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self.glowRed = 255
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self.glowGreen = 255
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self.glowBlue = 255
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self.glowStrength = 0.0
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self.tileX = 0
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self.tileY = 0
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if self.type == "circle" then
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self.x = args[1] or 0
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self.y = args[2] or 0
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self.radius = args[3] or 16
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self.ox = args[4] or 0
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self.oy = args[5] or 0
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self.shadowType = "circle"
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world.isShadows = true
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elseif self.type == "rectangle" then
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self.x = args[1] or 0
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self.y = args[2] or 0
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self.width = args[3] or 64
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self.height = args[4] or 64
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self.ox = self.width * 0.5
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self.oy = self.height * 0.5
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self.shadowType = "rectangle"
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self.data = {
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self.x - self.ox,
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self.y - self.oy,
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self.x - self.ox + self.width,
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self.y - self.oy,
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self.x - self.ox + self.width,
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self.y - self.oy + self.height,
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self.x - self.ox,
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self.y - self.oy + self.height
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}
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world.isShadows = true
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elseif self.type == "polygon" then
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self.shadowType = "polygon"
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self.data = args or {0, 0, 0, 0, 0, 0}
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world.isShadows = true
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elseif self.type == "image" then
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self.img = args[1]
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self.x = args[2] or 0
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self.y = args[3] or 0
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if self.img then
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self.imgWidth = self.img:getWidth()
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self.imgHeight = self.img:getHeight()
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self.width = args[4] or self.imgWidth
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self.height = args[5] or self.imgHeight
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self.ix = self.imgWidth * 0.5
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self.iy = self.imgHeight * 0.5
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self.vert = {
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{ 0.0, 0.0, 0.0, 0.0 },
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{ self.width, 0.0, 1.0, 0.0 },
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{ self.width, self.height, 1.0, 1.0 },
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{ 0.0, self.height, 0.0, 1.0 },
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}
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self.msh = love.graphics.newMesh(self.vert, self.img, "fan")
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else
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self.width = args[4] or 64
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self.height = args[5] or 64
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end
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self.ox = args[6] or self.width * 0.5
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self.oy = args[7] or self.height * 0.5
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self.shadowType = "rectangle"
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self.data = {
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self.x - self.ox,
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self.y - self.oy,
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self.x - self.ox + self.width,
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self.y - self.oy,
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self.x - self.ox + self.width,
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self.y - self.oy + self.height,
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self.x - self.ox,
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self.y - self.oy + self.height
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}
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self.reflective = true
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world.isShadows = true
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elseif self.type == "refraction" then
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self.normal = args[1]
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self.x = args[2] or 0
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self.y = args[3] or 0
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if self.normal then
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self.normalWidth = self.normal:getWidth()
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self.normalHeight = self.normal:getHeight()
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self.width = args[4] or self.normalWidth
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self.height = args[5] or self.normalHeight
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self.nx = self.normalWidth * 0.5
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self.ny = self.normalHeight * 0.5
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self.normal:setWrap("repeat", "repeat")
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self.normalVert = {
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{0.0, 0.0, 0.0, 0.0},
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{self.width, 0.0, 1.0, 0.0},
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{self.width, self.height, 1.0, 1.0},
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{0.0, self.height, 0.0, 1.0}
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}
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self.normalMesh = love.graphics.newMesh(self.normalVert, self.normal, "fan")
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else
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self.width = args[4] or 64
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self.height = args[5] or 64
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end
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self.ox = self.width * 0.5
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self.oy = self.height * 0.5
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self.refraction = true
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world.isRefraction = true
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elseif self.type == "reflection" then
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self.normal = args[1]
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self.x = args[2] or 0
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self.y = args[3] or 0
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if self.normal then
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self.normalWidth = self.normal:getWidth()
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self.normalHeight = self.normal:getHeight()
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self.width = args[4] or self.normalWidth
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self.height = args[5] or self.normalHeight
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self.nx = self.normalWidth * 0.5
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self.ny = self.normalHeight * 0.5
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self.normal:setWrap("repeat", "repeat")
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self.normalVert = {
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{0.0, 0.0, 0.0, 0.0},
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{self.width, 0.0, 1.0, 0.0},
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{self.width, self.height, 1.0, 1.0},
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{0.0, self.height, 0.0, 1.0}
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}
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self.normalMesh = love.graphics.newMesh(self.normalVert, self.normal, "fan")
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else
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self.width = args[4] or 64
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self.height = args[5] or 64
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end
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self.ox = self.width * 0.5
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self.oy = self.height * 0.5
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self.reflection = true
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world.isReflection = true
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end
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end
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-- refresh
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function body:refresh()
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if self.data then
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self.data[1] = self.x - self.ox
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self.data[2] = self.y - self.oy
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self.data[3] = self.x - self.ox + self.width
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self.data[4] = self.y - self.oy
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self.data[5] = self.x - self.ox + self.width
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self.data[6] = self.y - self.oy + self.height
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self.data[7] = self.x - self.ox
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self.data[8] = self.y - self.oy + self.height
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end
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end
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-- set position
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function body:setPosition(x, y)
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if x ~= self.x or y ~= self.y then
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self.x = x
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self.y = y
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self:refresh()
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self.world.changed = true
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end
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end
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-- set x position
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function body:setX(x)
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if x ~= self.x then
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self.x = x
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self:refresh()
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self.world.changed = true
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end
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end
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-- set y position
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function body:setY(y)
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if y ~= self.y then
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self.y = y
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self:refresh()
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self.world.changed = true
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end
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end
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-- get x position
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function body:getX()
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return self.x
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end
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-- get y position
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function body:getY(y)
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return self.y
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end
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-- get width
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function body:getWidth()
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return self.width
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end
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-- get height
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function body:getHeight()
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return self.height
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end
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-- get image width
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function body:getImageWidth()
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return self.imgWidth
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end
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-- get image height
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function body:getImageHeight()
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return self.imgHeight
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end
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-- set dimension
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function body:setDimension(width, height)
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self.width = width
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self.height = height
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self:refresh()
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self.world.changed = true
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end
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-- set offset
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function body:setOffset(ox, oy)
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if ox ~= self.ox or oy ~= self.oy then
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self.ox = ox
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self.oy = oy
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if self.shadowType == "rectangle" then
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self:refresh()
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end
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self.world.changed = true
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end
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end
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-- set offset
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function body:setImageOffset(ix, iy)
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if ix ~= self.ix or iy ~= self.iy then
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self.ix = ix
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self.iy = iy
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self:refresh()
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self.world.changed = true
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end
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end
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-- set offset
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function body:setNormalOffset(nx, ny)
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if nx ~= self.nx or ny ~= self.ny then
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self.nx = nx
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self.ny = ny
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self:refresh()
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self.world.changed = true
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end
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end
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-- set glow color
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function body:setGlowColor(red, green, blue)
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self.glowRed = red
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self.glowGreen = green
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self.glowBlue = blue
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self.world.changed = true
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end
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-- set glow alpha
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function body:setGlowStrength(strength)
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self.glowStrength = strength
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self.world.changed = true
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end
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-- get radius
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function body:getRadius()
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return self.radius
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end
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-- set radius
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function body:setRadius(radius)
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if radius ~= self.radius then
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self.radius = radius
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self.world.changed = true
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end
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end
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-- set polygon data
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function body:setPoints(...)
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self.data = {...}
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self.world.changed = true
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end
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-- get polygon data
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function body:getPoints()
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return unpack(self.data)
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end
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-- set shadow on/off
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function body:setShadow(b)
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self.castsNoShadow = not b
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self.world.changed = true
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end
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-- set shine on/off
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function body:setShine(b)
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self.shine = b
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self.world.changed = true
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end
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-- set glass color
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function body:setColor(red, green, blue)
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self.red = red
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self.green = green
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self.blue = blue
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self.world.changed = true
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end
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-- set glass alpha
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function body:setAlpha(alpha)
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self.alpha = alpha
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self.world.changed = true
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end
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-- set reflection on/off
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function body:setReflection(reflection)
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self.reflection = reflection
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end
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-- set refraction on/off
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function body:setRefraction(refraction)
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self.refraction = refraction
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end
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-- set reflective on other objects on/off
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function body:setReflective(reflective)
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self.reflective = reflective
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end
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-- set refractive on other objects on/off
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function body:setRefractive(refractive)
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self.refractive = refractive
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end
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-- set image
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function body:setImage(img)
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if img then
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self.img = img
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self.imgWidth = self.img:getWidth()
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self.imgHeight = self.img:getHeight()
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self.ix = self.imgWidth * 0.5
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self.iy = self.imgHeight * 0.5
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end
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end
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-- set normal
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function body:setNormalMap(normal, width, height, nx, ny)
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if normal then
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self.normal = normal
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self.normal:setWrap("repeat", "repeat")
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self.normalWidth = width or self.normal:getWidth()
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self.normalHeight = height or self.normal:getHeight()
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self.nx = nx or self.normalWidth * 0.5
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self.ny = ny or self.normalHeight * 0.5
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self.normalVert = {
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{0.0, 0.0, 0.0, 0.0},
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{self.normalWidth, 0.0, self.normalWidth / self.normal:getWidth(), 0.0},
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{self.normalWidth, self.normalHeight, self.normalWidth / self.normal:getWidth(), self.normalHeight / self.normal:getHeight()},
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{0.0, self.normalHeight, 0.0, self.normalHeight / self.normal:getHeight()}
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}
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self.normalMesh = love.graphics.newMesh(self.normalVert, self.normal, "fan")
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self.world.isPixelShadows = true
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else
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self.normalMesh = nil
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end
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end
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-- set height map
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function body:setHeightMap(heightMap, strength)
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self:setNormalMap(height_map_conv.toNormalMap(heightMap, strength))
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end
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-- generate flat normal map
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function body:generateNormalMapFlat(mode)
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local imgData = self.img:getData()
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local imgNormalData = love.image.newImageData(self.imgWidth, self.imgHeight)
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local color
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if mode == "top" then
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color = {127, 127, 255}
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elseif mode == "front" then
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color = {127, 0, 127}
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elseif mode == "back" then
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color = {127, 255, 127}
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elseif mode == "left" then
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color = {31, 0, 223}
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elseif mode == "right" then
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color = {223, 0, 127}
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end
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for i = 0, self.imgHeight - 1 do
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for k = 0, self.imgWidth - 1 do
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local r, g, b, a = imgData:getPixel(k, i)
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if a > 0 then
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imgNormalData:setPixel(k, i, color[1], color[2], color[3], 255)
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end
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end
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end
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self:setNormalMap(love.graphics.newImage(imgNormalData))
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end
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-- generate faded normal map
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function body:generateNormalMapGradient(horizontalGradient, verticalGradient)
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local imgData = self.img:getData()
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local imgNormalData = love.image.newImageData(self.imgWidth, self.imgHeight)
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local dx = 255.0 / self.imgWidth
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local dy = 255.0 / self.imgHeight
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local nx
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local ny
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local nz
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for i = 0, self.imgWidth - 1 do
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for k = 0, self.imgHeight - 1 do
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local r, g, b, a = imgData:getPixel(i, k)
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if a > 0 then
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if horizontalGradient == "gradient" then
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nx = i * dx
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elseif horizontalGradient == "inverse" then
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nx = 255 - i * dx
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else
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nx = 127
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end
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if verticalGradient == "gradient" then
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ny = 127 - k * dy * 0.5
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nz = 255 - k * dy * 0.5
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elseif verticalGradient == "inverse" then
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ny = 127 + k * dy * 0.5
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nz = 127 - k * dy * 0.25
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else
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ny = 255
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nz = 127
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end
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imgNormalData:setPixel(i, k, nx, ny, nz, 255)
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end
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end
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end
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self:setNormalMap(love.graphics.newImage(imgNormalData))
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end
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-- generate normal map
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function body:generateNormalMap(strength)
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self:setNormalMap(height_map_conv.toNormalMap(self.img, strength))
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end
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-- set material
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function body:setMaterial(material)
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if material then
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self.material = material
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end
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end
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-- set normal
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function body:setGlowMap(glow)
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self.glow = glow
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self.glowStrength = 1.0
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self.world.isGlow = true
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end
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-- set tile offset
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function body:setNormalTileOffset(tx, ty)
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self.tileX = tx / self.normalWidth
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self.tileY = ty / self.normalHeight
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self.normalVert = {
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{0.0, 0.0, self.tileX, self.tileY},
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{self.normalWidth, 0.0, self.tileX + 1.0, self.tileY},
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{self.normalWidth, self.normalHeight, self.tileX + 1.0, self.tileY + 1.0},
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{0.0, self.normalHeight, self.tileX, self.tileY + 1.0}
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}
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self.world.changed = true
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end
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-- get type
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function body:getType()
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return self.type
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end
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-- get type
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function body:setShadowType(type, ...)
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self.shadowType = type
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local args = {...}
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if self.shadowType == "circle" then
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self.radius = args[1] or 16
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self.ox = args[2] or 0
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self.oy = args[3] or 0
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elseif self.shadowType == "rectangle" then
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self.width = args[1] or 64
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self.height = args[2] or 64
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self.ox = args[3] or self.width * 0.5
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self.oy = args[4] or self.height * 0.5
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self.data = {
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self.x - self.ox,
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self.y - self.oy,
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self.x - self.ox + self.width,
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self.y - self.oy,
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self.x - self.ox + self.width,
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self.y - self.oy + self.height,
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self.x - self.ox,
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self.y - self.oy + self.height
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}
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elseif self.shadowType == "polygon" then
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self.data = args or {0, 0, 0, 0, 0, 0}
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elseif self.shadowType == "image" then
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if self.img then
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self.width = self.imgWidth
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self.height = self.imgHeight
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self.shadowVert = {
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{0.0, 0.0, 0.0, 0.0},
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{self.width, 0.0, 1.0, 0.0},
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{self.width, self.height, 1.0, 1.0},
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{0.0, self.height, 0.0, 1.0}
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}
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if not self.shadowMesh then
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self.shadowMesh = love.graphics.newMesh(self.shadowVert, self.img, "fan")
|
|
self.shadowMesh:setVertexColors(true)
|
|
end
|
|
else
|
|
self.width = 64
|
|
self.height = 64
|
|
end
|
|
self.shadowX = args[1] or 0
|
|
self.shadowY = args[2] or 0
|
|
self.fadeStrength = args[3] or 0.0
|
|
end
|
|
end
|
|
|
|
function body:drawShadow(light, l,t,w,h)
|
|
if self.alpha < 1.0 then
|
|
love.graphics.setBlendMode("multiplicative")
|
|
love.graphics.setColor(self.red, self.green, self.blue)
|
|
if self.shadowType == "circle" then
|
|
love.graphics.circle("fill", self.x - self.ox, self.y - self.oy, self.radius)
|
|
elseif self.shadowType == "rectangle" then
|
|
love.graphics.rectangle("fill", self.x - self.ox, self.y - self.oy, self.width, self.height)
|
|
elseif self.shadowType == "polygon" then
|
|
love.graphics.polygon("fill", unpack(self.data))
|
|
end
|
|
end
|
|
|
|
if self.shadowType == "image" and self.img then
|
|
love.graphics.setBlendMode("alpha")
|
|
local length = 1.0
|
|
local shadowRotation = math.atan2((self.x) - light.x, (self.y + self.oy) - light.y)
|
|
|
|
self.shadowVert = {
|
|
{math.sin(shadowRotation) * self.imgHeight * length, (length * math.cos(shadowRotation) + 1.0) * self.imgHeight + (math.cos(shadowRotation) + 1.0) * self.shadowY, 0, 0, self.red, self.green, self.blue, self.alpha * self.fadeStrength * 255},
|
|
{self.imgWidth + math.sin(shadowRotation) * self.imgHeight * length, (length * math.cos(shadowRotation) + 1.0) * self.imgHeight + (math.cos(shadowRotation) + 1.0) * self.shadowY, 1, 0, self.red, self.green, self.blue, self.alpha * self.fadeStrength * 255},
|
|
{self.imgWidth, self.imgHeight + (math.cos(shadowRotation) + 1.0) * self.shadowY, 1, 1, self.red, self.green, self.blue, self.alpha * 255},
|
|
{0, self.imgHeight + (math.cos(shadowRotation) + 1.0) * self.shadowY, 0, 1, self.red, self.green, self.blue, self.alpha * 255}
|
|
}
|
|
|
|
self.shadowMesh:setVertices(self.shadowVert)
|
|
love.graphics.draw(self.shadowMesh, self.x - self.ox + l, self.y - self.oy + t)
|
|
end
|
|
end
|
|
|
|
function body:drawPixelShadow(l,t,w,h)
|
|
if self.type == "image" and self.normalMesh then
|
|
love.graphics.setColor(255, 255, 255)
|
|
love.graphics.draw(self.normalMesh, self.x - self.nx, self.y - self.ny)
|
|
end
|
|
end
|
|
|
|
function body:drawGlow(l,t,w,h)
|
|
if self.glowStrength > 0.0 then
|
|
love.graphics.setColor(self.glowRed * self.glowStrength, self.glowGreen * self.glowStrength, self.glowBlue * self.glowStrength)
|
|
else
|
|
love.graphics.setColor(0, 0, 0)
|
|
end
|
|
|
|
if self.type == "circle" then
|
|
love.graphics.circle("fill", self.x, self.y, self.radius)
|
|
elseif self.type == "rectangle" then
|
|
love.graphics.rectangle("fill", self.x, self.y, self.width, self.height)
|
|
elseif self.type == "polygon" then
|
|
love.graphics.polygon("fill", unpack(self.data))
|
|
elseif self.type == "image" and self.img then
|
|
if self.glowStrength > 0.0 and self.glow then
|
|
love.graphics.setShader(self.glowShader)
|
|
self.glowShader:send("glowImage", self.glow)
|
|
self.glowShader:send("glowTime", love.timer.getTime() * 0.5)
|
|
love.graphics.setColor(255, 255, 255)
|
|
else
|
|
love.graphics.setShader()
|
|
love.graphics.setColor(0, 0, 0)
|
|
end
|
|
love.graphics.draw(self.img, self.x - self.ix, self.y - self.iy)
|
|
end
|
|
|
|
love.graphics.setShader()
|
|
end
|
|
|
|
function body:drawRefraction(l,t,w,h)
|
|
if self.refraction and self.normal then
|
|
love.graphics.setColor(255, 255, 255)
|
|
if self.tileX == 0.0 and self.tileY == 0.0 then
|
|
love.graphics.draw(normal, self.x - self.nx + l, self.y - self.ny + t)
|
|
else
|
|
self.normalMesh:setVertices(self.normalVert)
|
|
love.graphics.draw(self.normalMesh, self.x - self.nx + l, self.y - self.ny + t)
|
|
end
|
|
end
|
|
|
|
love.graphics.setColor(0, 0, 0)
|
|
|
|
if not self.refractive then
|
|
if self.type == "circle" then
|
|
love.graphics.circle("fill", self.x, self.y, self.radius)
|
|
elseif self.type == "rectangle" then
|
|
love.graphics.rectangle("fill", self.x, self.y, self.width, self.height)
|
|
elseif self.type == "polygon" then
|
|
love.graphics.polygon("fill", unpack(self.data))
|
|
elseif self.type == "image" and self.img then
|
|
love.graphics.draw(self.img, self.x - self.ix + l, self.y - self.iy + t)
|
|
end
|
|
end
|
|
end
|
|
|
|
function body:drawReflection(l,t,w,h)
|
|
if self.reflection and self.normal then
|
|
love.graphics.setColor(255, 0, 0)
|
|
self.normalMesh:setVertices(self.normalVert)
|
|
love.graphics.draw(self.normalMesh, self.x - self.nx + l, self.y - self.ny + t)
|
|
end
|
|
if self.reflective and self.img then
|
|
love.graphics.setColor(0, 255, 0)
|
|
love.graphics.draw(self.img, self.x - self.ix + l, self.y - self.iy + t)
|
|
elseif not self.reflection and self.img then
|
|
love.graphics.setColor(0, 0, 0)
|
|
love.graphics.draw(self.img, self.x - self.ix + l, self.y - self.iy + t)
|
|
end
|
|
end
|
|
|
|
function body:drawMaterial(l,t,w,h)
|
|
if self.material and self.normal then
|
|
love.graphics.setShader(self.materialShader)
|
|
love.graphics.setColor(255, 255, 255)
|
|
self.materialShader:send("material", self.material)
|
|
love.graphics.draw(self.normal, self.x - self.nx + l, self.y - self.ny + t)
|
|
love.graphics.setShader()
|
|
end
|
|
end
|
|
|
|
return body
|