added in examples for common cameras

This commit is contained in:
Tim Anema 2014-12-03 19:22:45 -05:00
parent 207840c2cc
commit 8d40785844
18 changed files with 1661 additions and 3 deletions

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.gitignore vendored Normal file
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.DS_Store

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:todoing :todoing
-isinlightrange still not working right
-add body animations -add body animations
-optimize shadow body calculations and drawing methods
# light_world.lua # light_world.lua

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-- Example: Gamera Example
local gamera = require "examples/vendor/gamera"
local LightWorld = require "lib"
function love.load()
x = 0
y = 0
scale = 1
cam = gamera.new(0, 0, love.graphics.getWidth(), love.graphics.getHeight())
image = love.graphics.newImage("examples/gfx/machine2.png")
image_normal = love.graphics.newImage("examples/gfx/cone_normal.png")
normal = love.graphics.newImage("examples/gfx/refraction_normal.png")
glow = love.graphics.newImage("examples/gfx/machine2_glow.png")
-- create light world
lightWorld = LightWorld({
drawBackground = drawBackground,
drawForeground = drawForeground,
ambient = {55,55,55},
refractionStrength = 32.0,
reflectionVisibility = 0.75,
})
-- create light
lightMouse = lightWorld:newLight(0, 0, 255, 127, 63, 300)
lightMouse:setGlowStrength(0.3)
-- create shadow bodys
circleTest = lightWorld:newCircle(256, 256, 16)
rectangleTest = lightWorld:newRectangle(512, 512, 64, 64)
imageTest = lightWorld:newImage(image, 64, 64, 24, 6)
imageTest:setNormalMap(image_normal)
imageTest:setGlowMap(glow)
imageTest:setOffset(12, -10)
-- create body object
objectTest = lightWorld:newRefraction(normal, 64, 64, 128, 128)
objectTest:setReflection(true)
end
function love.update(dt)
love.window.setTitle("Light vs. Shadow Engine (FPS:" .. love.timer.getFPS() .. ")")
if love.keyboard.isDown("down") then
y = y - dt * 200
elseif love.keyboard.isDown("up") then
y = y + dt * 200
end
if love.keyboard.isDown("right") then
x = x - dt * 200
elseif love.keyboard.isDown("left") then
x = x + dt * 200
end
if love.keyboard.isDown("-") then
scale = scale - 0.01
elseif love.keyboard.isDown("=") then
scale = scale + 0.01
end
lightMouse:setPosition((love.mouse.getX() - x)/scale, (love.mouse.getY() - y)/scale, z)
cam:setScale(scale)
cam:setPosition(x, y)
lightWorld:setTranslation(x, y, scale)
end
function love.draw()
cam:draw(function(l,t,w,h)
lightWorld:draw(function()
love.graphics.setColor(255, 255, 255)
love.graphics.rectangle("fill", -x/scale, -y/scale, love.graphics.getWidth()/scale, love.graphics.getHeight()/scale)
love.graphics.setColor(63, 255, 127)
local cx, cy = circleTest:getPosition()
love.graphics.circle("fill", cx, cy, circleTest:getRadius())
love.graphics.polygon("fill", rectangleTest:getPoints())
love.graphics.setColor(255, 255, 255)
love.graphics.draw(image, 64 - image:getWidth() * 0.5, 64 - image:getHeight() * 0.5)
end)
end)
end

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-- Example: Hump Example
local Camera = require "examples/vendor/hump/camera"
local LightWorld = require "lib"
function love.load()
x = 0
y = 0
scale = 1
cam = Camera(love.graphics.getWidth()/2, love.graphics.getHeight()/2)
image = love.graphics.newImage("examples/gfx/machine2.png")
image_normal = love.graphics.newImage("examples/gfx/cone_normal.png")
normal = love.graphics.newImage("examples/gfx/refraction_normal.png")
glow = love.graphics.newImage("examples/gfx/machine2_glow.png")
-- create light world
lightWorld = LightWorld({
drawBackground = drawBackground,
drawForeground = drawForeground,
ambient = {55,55,55},
refractionStrength = 32.0,
reflectionVisibility = 0.75,
})
-- create light
lightMouse = lightWorld:newLight(0, 0, 255, 127, 63, 300)
lightMouse:setGlowStrength(0.3)
-- create shadow bodys
circleTest = lightWorld:newCircle(256, 256, 16)
rectangleTest = lightWorld:newRectangle(512, 512, 64, 64)
imageTest = lightWorld:newImage(image, 64, 64, 24, 6)
imageTest:setNormalMap(image_normal)
imageTest:setGlowMap(glow)
imageTest:setOffset(12, -10)
-- create body object
objectTest = lightWorld:newRefraction(normal, 64, 64, 128, 128)
objectTest:setReflection(true)
end
function love.update(dt)
love.window.setTitle("Light vs. Shadow Engine (FPS:" .. love.timer.getFPS() .. ")")
if love.keyboard.isDown("down") then
y = y - dt * 200
elseif love.keyboard.isDown("up") then
y = y + dt * 200
end
if love.keyboard.isDown("right") then
x = x - dt * 200
elseif love.keyboard.isDown("left") then
x = x + dt * 200
end
if love.keyboard.isDown("-") then
scale = scale - 0.01
elseif love.keyboard.isDown("=") then
scale = scale + 0.01
end
lightMouse:setPosition((love.mouse.getX() - x)/scale, (love.mouse.getY() - y)/scale, z)
cam:lookAt(x, y)
cam:zoom(scale)
lightWorld:setTranslation(x, y, scale)
end
function love.draw()
cam:attach()
lightWorld:draw(function()
love.graphics.setColor(255, 255, 255)
love.graphics.rectangle("fill", -x/scale, -y/scale, love.graphics.getWidth()/scale, love.graphics.getHeight()/scale)
love.graphics.setColor(63, 255, 127)
local cx, cy = circleTest:getPosition()
love.graphics.circle("fill", cx, cy, circleTest:getRadius())
love.graphics.polygon("fill", rectangleTest:getPoints())
love.graphics.setColor(255, 255, 255)
love.graphics.draw(image, 64 - image:getWidth() * 0.5, 64 - image:getHeight() * 0.5)
end)
cam:detach()
end

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-- Example: Short Example -- Example: Short Example
local LightWorld = require "lib" local LightWorld = require "lib"
local normal_map = require "lib/normal_map"
function love.load() function love.load()
testShader = 0 testShader = 0

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-- gamera.lua v1.0.1
-- Copyright (c) 2012 Enrique García Cota
-- Permission is hereby granted, free of charge, to any person obtaining a copy of this software and associated documentation files (the "Software"), to deal in the Software without restriction, including without limitation the rights to use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of the Software, and to permit persons to whom the Software is furnished to do so, subject to the following conditions:
-- The above copyright notice and this permission notice shall be included in all copies or substantial portions of the Software.
-- THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
-- Based on YaciCode, from Julien Patte and LuaObject, from Sebastien Rocca-Serra
local gamera = {}
-- Private attributes and methods
local gameraMt = {__index = gamera}
local abs, min, max = math.abs, math.min, math.max
local function clamp(x, minX, maxX)
return x < minX and minX or (x>maxX and maxX or x)
end
local function checkNumber(value, name)
if type(value) ~= 'number' then
error(name .. " must be a number (was: " .. tostring(value) .. ")")
end
end
local function checkPositiveNumber(value, name)
if type(value) ~= 'number' or value <=0 then
error(name .. " must be a positive number (was: " .. tostring(value) ..")")
end
end
local function checkAABB(l,t,w,h)
checkNumber(l, "l")
checkNumber(t, "t")
checkPositiveNumber(w, "w")
checkPositiveNumber(h, "h")
end
local function getVisibleArea(self, scale)
scale = scale or self.scale
local sin, cos = abs(self.sin), abs(self.cos)
local w,h = self.w / scale, self.h / scale
w,h = cos*w + sin*h, sin*w + cos*h
return min(w,self.ww), min(h, self.wh)
end
local function cornerTransform(self, x,y)
local scale, sin, cos = self.scale, self.sin, self.cos
x,y = x - self.x, y - self.y
x,y = -cos*x + sin*y, -sin*x - cos*y
return self.x - (x/scale + self.l), self.y - (y/scale + self.t)
end
local function adjustPosition(self)
local wl,wt,ww,wh = self.wl, self.wt, self.ww, self.wh
local w,h = getVisibleArea(self)
local w2,h2 = w*0.5, h*0.5
local left, right = wl + w2, wl + ww - w2
local top, bottom = wt + h2, wt + wh - h2
self.x, self.y = clamp(self.x, left, right), clamp(self.y, top, bottom)
end
local function adjustScale(self)
local w,h,ww,wh = self.w, self.h, self.ww, self.wh
local rw,rh = getVisibleArea(self, 1) -- rotated frame: area around the window, rotated without scaling
local sx,sy = rw/ww, rh/wh -- vert/horiz scale: minimun scales that the window needs to occupy the world
local rscale = max(sx,sy)
self.scale = max(self.scale, rscale)
end
-- Public interface
function gamera.new(l,t,w,h)
local sw,sh = love.graphics.getWidth(), love.graphics.getHeight()
local cam = setmetatable({
x=0, y=0,
scale=1,
angle=0, sin=math.sin(0), cos=math.cos(0),
l=0, t=0, w=sw, h=sh, w2=sw*0.5, h2=sh*0.5
}, gameraMt)
cam:setWorld(l,t,w,h)
return cam
end
function gamera:setWorld(l,t,w,h)
checkAABB(l,t,w,h)
self.wl, self.wt, self.ww, self.wh = l,t,w,h
adjustPosition(self)
end
function gamera:setWindow(l,t,w,h)
checkAABB(l,t,w,h)
self.l, self.t, self.w, self.h, self.w2, self.h2 = l,t,w,h, w*0.5, h*0.5
adjustPosition(self)
end
function gamera:setPosition(x,y)
checkNumber(x, "x")
checkNumber(y, "y")
self.x, self.y = x,y
adjustPosition(self)
end
function gamera:setScale(scale)
checkNumber(scale, "scale")
self.scale = scale
adjustScale(self)
adjustPosition(self)
end
function gamera:setAngle(angle)
checkNumber(angle, "angle")
self.angle = angle
self.cos, self.sin = math.cos(angle), math.sin(angle)
adjustScale(self)
adjustPosition(self)
end
function gamera:getWorld()
return self.wl, self.wt, self.ww, self.wh
end
function gamera:getWindow()
return self.l, self.t, self.w, self.h
end
function gamera:getPosition()
return self.x, self.y
end
function gamera:getScale()
return self.scale
end
function gamera:getAngle()
return self.angle
end
function gamera:getVisible()
local w,h = getVisibleArea(self)
return self.x - w*0.5, self.y - h*0.5, w, h
end
function gamera:getVisibleCorners()
local x,y,w2,h2 = self.x, self.y, self.w2, self.h2
local x1,y1 = cornerTransform(self, x-w2,y-h2)
local x2,y2 = cornerTransform(self, x+w2,y-h2)
local x3,y3 = cornerTransform(self, x+w2,y+h2)
local x4,y4 = cornerTransform(self, x-w2,y+h2)
return x1,y1,x2,y2,x3,y3,x4,y4
end
function gamera:draw(f)
love.graphics.setScissor(self:getWindow())
love.graphics.push()
local scale = self.scale
love.graphics.scale(scale)
love.graphics.translate((self.w2 + self.l) / scale, (self.h2+self.t) / scale)
love.graphics.rotate(-self.angle)
love.graphics.translate(-self.x, -self.y)
f(self:getVisible())
love.graphics.pop()
love.graphics.setScissor()
end
function gamera:toWorld(x,y)
local scale, sin, cos = self.scale, self.sin, self.cos
x,y = (x - self.w2 - self.l) / scale, (y - self.h2 - self.t) / scale
x,y = cos*x - sin*y, sin*x + cos*y
return x + self.x, y + self.y
end
function gamera:toScreen(x,y)
local scale, sin, cos = self.scale, self.sin, self.cos
x,y = x - self.x, y - self.y
x,y = cos*x + sin*y, -sin*x + cos*y
return scale * x + self.w2 + self.l, scale * y + self.h2 + self.t
end
return gamera

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HUMP - Helper Utilities for Massive Progression
===============================================
__HUMP__ is a small collection of tools for developing games with L&Ouml;VE.
Contents:
------------
* *gamestate.lua*: Easy gamestate management.
* *timer.lua*: Delayed and time-limited function calls and tweening functionality.
* *vector.lua*: 2D vector math.
* *vector-light.lua*: Lightweight 2D vector math (for optimisation purposes - leads to potentially ugly code).
* *class.lua*: Lightweight object orientation (class or prototype based).
* *signal.lua*: Simple Signal/Slot (aka. Observer) implementation.
* *camera.lua*: Move-, zoom- and rotatable camera.
Documentation
=============
You can find the documentation here: [http://vrld.github.com/hump/](http://vrld.github.com/hump/)
License
=======
> Copyright (c) 2010-2013 Matthias Richter
>
> Permission is hereby granted, free of charge, to any person obtaining a copy
> of this software and associated documentation files (the "Software"), to deal
> in the Software without restriction, including without limitation the rights
> to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
> copies of the Software, and to permit persons to whom the Software is
> furnished to do so, subject to the following conditions:
>
> The above copyright notice and this permission notice shall be included in
> all copies or substantial portions of the Software.
>
> Except as contained in this notice, the name(s) of the above copyright holders
> shall not be used in advertising or otherwise to promote the sale, use or
> other dealings in this Software without prior written authorization.
>
> THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
> IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
> FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
> AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
> LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
> OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
> THE SOFTWARE.

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--[[
Copyright (c) 2010-2013 Matthias Richter
Permission is hereby granted, free of charge, to any person obtaining a copy
of this software and associated documentation files (the "Software"), to deal
in the Software without restriction, including without limitation the rights
to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
copies of the Software, and to permit persons to whom the Software is
furnished to do so, subject to the following conditions:
The above copyright notice and this permission notice shall be included in
all copies or substantial portions of the Software.
Except as contained in this notice, the name(s) of the above copyright holders
shall not be used in advertising or otherwise to promote the sale, use or
other dealings in this Software without prior written authorization.
THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
THE SOFTWARE.
]]--
local _PATH = (...):match('^(.*[%./])[^%.%/]+$') or ''
local cos, sin = math.cos, math.sin
local camera = {}
camera.__index = camera
local function new(x,y, zoom, rot)
x,y = x or love.graphics.getWidth()/2, y or love.graphics.getHeight()/2
zoom = zoom or 1
rot = rot or 0
return setmetatable({x = x, y = y, scale = zoom, rot = rot}, camera)
end
function camera:lookAt(x,y)
self.x, self.y = x,y
return self
end
function camera:move(x,y)
self.x, self.y = self.x + x, self.y + y
return self
end
function camera:pos()
return self.x, self.y
end
function camera:rotate(phi)
self.rot = self.rot + phi
return self
end
function camera:rotateTo(phi)
self.rot = phi
return self
end
function camera:zoom(mul)
self.scale = self.scale * mul
return self
end
function camera:zoomTo(zoom)
self.scale = zoom
return self
end
function camera:attach()
local cx,cy = love.graphics.getWidth()/(2*self.scale), love.graphics.getHeight()/(2*self.scale)
love.graphics.push()
love.graphics.scale(self.scale)
love.graphics.translate(cx, cy)
love.graphics.rotate(self.rot)
love.graphics.translate(-self.x, -self.y)
end
function camera:detach()
love.graphics.pop()
end
function camera:draw(func)
self:attach()
func()
self:detach()
end
function camera:cameraCoords(x,y)
-- x,y = ((x,y) - (self.x, self.y)):rotated(self.rot) * self.scale + center
local w,h = love.graphics.getWidth(), love.graphics.getHeight()
local c,s = cos(self.rot), sin(self.rot)
x,y = x - self.x, y - self.y
x,y = c*x - s*y, s*x + c*y
return x*self.scale + w/2, y*self.scale + h/2
end
function camera:worldCoords(x,y)
-- x,y = (((x,y) - center) / self.scale):rotated(-self.rot) + (self.x,self.y)
local w,h = love.graphics.getWidth(), love.graphics.getHeight()
local c,s = cos(-self.rot), sin(-self.rot)
x,y = (x - w/2) / self.scale, (y - h/2) / self.scale
x,y = c*x - s*y, s*x + c*y
return x+self.x, y+self.y
end
function camera:mousepos()
return self:worldCoords(love.mouse.getPosition())
end
-- the module
return setmetatable({new = new},
{__call = function(_, ...) return new(...) end})

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--[[
Copyright (c) 2010-2013 Matthias Richter
Permission is hereby granted, free of charge, to any person obtaining a copy
of this software and associated documentation files (the "Software"), to deal
in the Software without restriction, including without limitation the rights
to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
copies of the Software, and to permit persons to whom the Software is
furnished to do so, subject to the following conditions:
The above copyright notice and this permission notice shall be included in
all copies or substantial portions of the Software.
Except as contained in this notice, the name(s) of the above copyright holders
shall not be used in advertising or otherwise to promote the sale, use or
other dealings in this Software without prior written authorization.
THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
THE SOFTWARE.
]]--
local function include_helper(to, from, seen)
if from == nil then
return to
elseif type(from) ~= 'table' then
return from
elseif seen[from] then
return seen[from]
end
seen[from] = to
for k,v in pairs(from) do
k = include_helper({}, k, seen) -- keys might also be tables
if not to[k] then
to[k] = include_helper({}, v, seen)
end
end
return to
end
-- deeply copies `other' into `class'. keys in `other' that are already
-- defined in `class' are omitted
local function include(class, other)
return include_helper(class, other, {})
end
-- returns a deep copy of `other'
local function clone(other)
return setmetatable(include({}, other), getmetatable(other))
end
local function new(class)
-- mixins
local inc = class.__includes or {}
if getmetatable(inc) then inc = {inc} end
for _, other in ipairs(inc) do
include(class, other)
end
-- class implementation
class.__index = class
class.init = class.init or class[1] or function() end
class.include = class.include or include
class.clone = class.clone or clone
-- constructor call
return setmetatable(class, {__call = function(c, ...)
local o = setmetatable({}, c)
o:init(...)
return o
end})
end
-- interface for cross class-system compatibility (see https://github.com/bartbes/Class-Commons).
if class_commons ~= false and not common then
common = {}
function common.class(name, prototype, parent)
return new{__includes = {prototype, parent}}
end
function common.instance(class, ...)
return class(...)
end
end
-- the module
return setmetatable({new = new, include = include, clone = clone},
{__call = function(_,...) return new(...) end})

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--[[
Copyright (c) 2010-2013 Matthias Richter
Permission is hereby granted, free of charge, to any person obtaining a copy
of this software and associated documentation files (the "Software"), to deal
in the Software without restriction, including without limitation the rights
to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
copies of the Software, and to permit persons to whom the Software is
furnished to do so, subject to the following conditions:
The above copyright notice and this permission notice shall be included in
all copies or substantial portions of the Software.
Except as contained in this notice, the name(s) of the above copyright holders
shall not be used in advertising or otherwise to promote the sale, use or
other dealings in this Software without prior written authorization.
THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
THE SOFTWARE.
]]--
local function __NULL__() end
-- default gamestate produces error on every callback
local state_init = setmetatable({leave = __NULL__},
{__index = function() error("Gamestate not initialized. Use Gamestate.switch()") end})
local stack = {state_init}
local GS = {}
function GS.new(t) return t or {} end -- constructor - deprecated!
function GS.switch(to, ...)
assert(to, "Missing argument: Gamestate to switch to")
assert(to ~= GS, "Can't call switch with colon operator")
local pre = stack[#stack]
;(pre.leave or __NULL__)(pre)
;(to.init or __NULL__)(to)
to.init = nil
stack[#stack] = to
return (to.enter or __NULL__)(to, pre, ...)
end
function GS.push(to, ...)
assert(to, "Missing argument: Gamestate to switch to")
assert(to ~= GS, "Can't call push with colon operator")
local pre = stack[#stack]
;(to.init or __NULL__)(to)
to.init = nil
stack[#stack+1] = to
return (to.enter or __NULL__)(to, pre, ...)
end
function GS.pop(...)
assert(#stack > 1, "No more states to pop!")
local pre = stack[#stack]
stack[#stack] = nil
;(pre.leave or __NULL__)(pre)
return (stack[#stack].resume or __NULL__)(pre, ...)
end
function GS.current()
return stack[#stack]
end
local all_callbacks = {
'draw', 'errhand', 'focus', 'keypressed', 'keyreleased', 'mousefocus',
'mousepressed', 'mousereleased', 'quit', 'resize', 'textinput',
'threaderror', 'update', 'visible', 'gamepadaxis', 'gamepadpressed',
'gamepadreleased', 'joystickadded', 'joystickaxis', 'joystickhat',
'joystickpressed', 'joystickreleased', 'joystickremoved'
}
function GS.registerEvents(callbacks)
local registry = {}
callbacks = callbacks or all_callbacks
for _, f in ipairs(callbacks) do
registry[f] = love[f] or __NULL__
love[f] = function(...)
registry[f](...)
return GS[f](...)
end
end
end
-- forward any undefined functions
setmetatable(GS, {__index = function(_, func)
return function(...)
return (stack[#stack][func] or __NULL__)(stack[#stack], ...)
end
end})
return GS

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--[[
Copyright (c) 2012-2013 Matthias Richter
Permission is hereby granted, free of charge, to any person obtaining a copy
of this software and associated documentation files (the "Software"), to deal
in the Software without restriction, including without limitation the rights
to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
copies of the Software, and to permit persons to whom the Software is
furnished to do so, subject to the following conditions:
The above copyright notice and this permission notice shall be included in
all copies or substantial portions of the Software.
Except as contained in this notice, the name(s) of the above copyright holders
shall not be used in advertising or otherwise to promote the sale, use or
other dealings in this Software without prior written authorization.
THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
THE SOFTWARE.
]]--
local Registry = {}
Registry.__index = function(self, key)
return Registry[key] or (function()
local t = {}
rawset(self, key, t)
return t
end)()
end
function Registry:register(s, f)
self[s][f] = f
return f
end
function Registry:emit(s, ...)
for f in pairs(self[s]) do
f(...)
end
end
function Registry:remove(s, ...)
local f = {...}
for i = 1,select('#', ...) do
self[s][f[i]] = nil
end
end
function Registry:clear(...)
local s = {...}
for i = 1,select('#', ...) do
self[s[i]] = {}
end
end
function Registry:emit_pattern(p, ...)
for s in pairs(self) do
if s:match(p) then self:emit(s, ...) end
end
end
function Registry:remove_pattern(p, ...)
for s in pairs(self) do
if s:match(p) then self:remove(s, ...) end
end
end
function Registry:clear_pattern(p)
for s in pairs(self) do
if s:match(p) then self[s] = {} end
end
end
-- the module
local function new()
local registry = setmetatable({}, Registry)
return setmetatable({
new = new,
register = function(...) return registry:register(...) end,
emit = function(...) registry:emit(...) end,
remove = function(...) registry:remove(...) end,
clear = function(...) registry:clear(...) end,
emit_pattern = function(...) registry:emit_pattern(...) end,
remove_pattern = function(...) registry:remove_pattern(...) end,
clear_pattern = function(...) registry:clear_pattern(...) end,
}, {__call = new})
end
return new()

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--[[
Copyright (c) 2010-2013 Matthias Richter
Permission is hereby granted, free of charge, to any person obtaining a copy
of this software and associated documentation files (the "Software"), to deal
in the Software without restriction, including without limitation the rights
to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
copies of the Software, and to permit persons to whom the Software is
furnished to do so, subject to the following conditions:
The above copyright notice and this permission notice shall be included in
all copies or substantial portions of the Software.
Except as contained in this notice, the name(s) of the above copyright holders
shall not be used in advertising or otherwise to promote the sale, use or
other dealings in this Software without prior written authorization.
THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
THE SOFTWARE.
]]--
local Timer = {}
Timer.__index = Timer
local function _nothing_() end
function Timer:update(dt)
local to_remove = {}
for handle, delay in pairs(self.functions) do
delay = delay - dt
if delay <= 0 then
to_remove[#to_remove+1] = handle
end
self.functions[handle] = delay
handle.func(dt, delay)
end
for _,handle in ipairs(to_remove) do
self.functions[handle] = nil
handle.after(handle.after)
end
end
function Timer:do_for(delay, func, after)
local handle = {func = func, after = after or _nothing_}
self.functions[handle] = delay
return handle
end
function Timer:add(delay, func)
return self:do_for(delay, _nothing_, func)
end
function Timer:addPeriodic(delay, func, count)
local count, handle = count or math.huge -- exploit below: math.huge - 1 = math.huge
handle = self:add(delay, function(f)
if func(func) == false then return end
count = count - 1
if count > 0 then
self.functions[handle] = delay
end
end)
return handle
end
function Timer:cancel(handle)
self.functions[handle] = nil
end
function Timer:clear()
self.functions = {}
end
Timer.tween = setmetatable({
-- helper functions
out = function(f) -- 'rotates' a function
return function(s, ...) return 1 - f(1-s, ...) end
end,
chain = function(f1, f2) -- concatenates two functions
return function(s, ...) return (s < .5 and f1(2*s, ...) or 1 + f2(2*s-1, ...)) * .5 end
end,
-- useful tweening functions
linear = function(s) return s end,
quad = function(s) return s*s end,
cubic = function(s) return s*s*s end,
quart = function(s) return s*s*s*s end,
quint = function(s) return s*s*s*s*s end,
sine = function(s) return 1-math.cos(s*math.pi/2) end,
expo = function(s) return 2^(10*(s-1)) end,
circ = function(s) return 1 - math.sqrt(1-s*s) end,
back = function(s,bounciness)
bounciness = bounciness or 1.70158
return s*s*((bounciness+1)*s - bounciness)
end,
bounce = function(s) -- magic numbers ahead
local a,b = 7.5625, 1/2.75
return math.min(a*s^2, a*(s-1.5*b)^2 + .75, a*(s-2.25*b)^2 + .9375, a*(s-2.625*b)^2 + .984375)
end,
elastic = function(s, amp, period)
amp, period = amp and math.max(1, amp) or 1, period or .3
return (-amp * math.sin(2*math.pi/period * (s-1) - math.asin(1/amp))) * 2^(10*(s-1))
end,
}, {
-- register new tween
__call = function(tween, self, len, subject, target, method, after, ...)
-- recursively collects fields that are defined in both subject and target into a flat list
local function tween_collect_payload(subject, target, out)
for k,v in pairs(target) do
local ref = subject[k]
assert(type(v) == type(ref), 'Type mismatch in field "'..k..'".')
if type(v) == 'table' then
tween_collect_payload(ref, v, out)
else
local ok, delta = pcall(function() return (v-ref)*1 end)
assert(ok, 'Field "'..k..'" does not support arithmetic operations')
out[#out+1] = {subject, k, delta}
end
end
return out
end
method = tween[method or 'linear'] -- see __index
local payload, t, args = tween_collect_payload(subject, target, {}), 0, {...}
local last_s = 0
return self:do_for(len, function(dt)
t = t + dt
local s = method(math.min(1, t/len), unpack(args))
local ds = s - last_s
last_s = s
for _, info in ipairs(payload) do
local ref, key, delta = unpack(info)
ref[key] = ref[key] + delta * ds
end
end, after)
end,
-- fetches function and generated compositions for method `key`
__index = function(tweens, key)
if type(key) == 'function' then return key end
assert(type(key) == 'string', 'Method must be function or string.')
if rawget(tweens, key) then return rawget(tweens, key) end
local function construct(pattern, f)
local method = rawget(tweens, key:match(pattern))
if method then return f(method) end
return nil
end
local out, chain = rawget(tweens,'out'), rawget(tweens,'chain')
return construct('^in%-([^-]+)$', function(...) return ... end)
or construct('^out%-([^-]+)$', out)
or construct('^in%-out%-([^-]+)$', function(f) return chain(f, out(f)) end)
or construct('^out%-in%-([^-]+)$', function(f) return chain(out(f), f) end)
or error('Unknown interpolation method: ' .. key)
end})
-- the module
local function new()
local timer = setmetatable({functions = {}, tween = Timer.tween}, Timer)
return setmetatable({
new = new,
update = function(...) return timer:update(...) end,
do_for = function(...) return timer:do_for(...) end,
add = function(...) return timer:add(...) end,
addPeriodic = function(...) return timer:addPeriodic(...) end,
cancel = function(...) return timer:cancel(...) end,
clear = function(...) return timer:clear(...) end,
tween = setmetatable({}, {
__index = Timer.tween,
__newindex = function(_,k,v) Timer.tween[k] = v end,
__call = function(t,...) return timer:tween(...) end,
})
}, {__call = new})
end
return new()

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--[[
Copyright (c) 2012-2013 Matthias Richter
Permission is hereby granted, free of charge, to any person obtaining a copy
of this software and associated documentation files (the "Software"), to deal
in the Software without restriction, including without limitation the rights
to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
copies of the Software, and to permit persons to whom the Software is
furnished to do so, subject to the following conditions:
The above copyright notice and this permission notice shall be included in
all copies or substantial portions of the Software.
Except as contained in this notice, the name(s) of the above copyright holders
shall not be used in advertising or otherwise to promote the sale, use or
other dealings in this Software without prior written authorization.
THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
THE SOFTWARE.
]]--
local sqrt, cos, sin, atan2 = math.sqrt, math.cos, math.sin, math.atan2
local function str(x,y)
return "("..tonumber(x)..","..tonumber(y)..")"
end
local function mul(s, x,y)
return s*x, s*y
end
local function div(s, x,y)
return x/s, y/s
end
local function add(x1,y1, x2,y2)
return x1+x2, y1+y2
end
local function sub(x1,y1, x2,y2)
return x1-x2, y1-y2
end
local function permul(x1,y1, x2,y2)
return x1*x2, y1*y2
end
local function dot(x1,y1, x2,y2)
return x1*x2 + y1*y2
end
local function det(x1,y1, x2,y2)
return x1*y2 - y1*x2
end
local function eq(x1,y1, x2,y2)
return x1 == x2 and y1 == y2
end
local function lt(x1,y1, x2,y2)
return x1 < x2 or (x1 == x2 and y1 < y2)
end
local function le(x1,y1, x2,y2)
return x1 <= x2 and y1 <= y2
end
local function len2(x,y)
return x*x + y*y
end
local function len(x,y)
return sqrt(x*x + y*y)
end
local function dist2(x1,y1, x2,y2)
return len2(x1-x2, y1-y2)
end
local function dist(x1,y1, x2,y2)
return len(x1-x2, y1-y2)
end
local function normalize(x,y)
local l = len(x,y)
if l > 0 then
return x/l, y/l
end
return x,y
end
local function rotate(phi, x,y)
local c, s = cos(phi), sin(phi)
return c*x - s*y, s*x + c*y
end
local function perpendicular(x,y)
return -y, x
end
local function project(x,y, u,v)
local s = (x*u + y*v) / (u*u + v*v)
return s*u, s*v
end
local function mirror(x,y, u,v)
local s = 2 * (x*u + y*v) / (u*u + v*v)
return s*u - x, s*v - y
end
-- ref.: http://blog.signalsondisplay.com/?p=336
local function trim(maxLen, x, y)
local s = maxLen * maxLen / len2(x, y)
s = s > 1 and 1 or math.sqrt(s)
return x * s, y * s
end
local function angleTo(x,y, u,v)
if u and v then
return atan2(y, x) - atan2(v, u)
end
return atan2(y, x)
end
-- the module
return {
str = str,
-- arithmetic
mul = mul,
div = div,
add = add,
sub = sub,
permul = permul,
dot = dot,
det = det,
cross = det,
-- relation
eq = eq,
lt = lt,
le = le,
-- misc operations
len2 = len2,
len = len,
dist2 = dist2,
dist = dist,
normalize = normalize,
rotate = rotate,
perpendicular = perpendicular,
project = project,
mirror = mirror,
trim = trim,
angleTo = angleTo,
}

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--[[
Copyright (c) 2010-2013 Matthias Richter
Permission is hereby granted, free of charge, to any person obtaining a copy
of this software and associated documentation files (the "Software"), to deal
in the Software without restriction, including without limitation the rights
to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
copies of the Software, and to permit persons to whom the Software is
furnished to do so, subject to the following conditions:
The above copyright notice and this permission notice shall be included in
all copies or substantial portions of the Software.
Except as contained in this notice, the name(s) of the above copyright holders
shall not be used in advertising or otherwise to promote the sale, use or
other dealings in this Software without prior written authorization.
THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
THE SOFTWARE.
]]--
local assert = assert
local sqrt, cos, sin, atan2 = math.sqrt, math.cos, math.sin, math.atan2
local vector = {}
vector.__index = vector
local function new(x,y)
return setmetatable({x = x or 0, y = y or 0}, vector)
end
local zero = new(0,0)
local function isvector(v)
return type(v) == 'table' and type(v.x) == 'number' and type(v.y) == 'number'
end
function vector:clone()
return new(self.x, self.y)
end
function vector:unpack()
return self.x, self.y
end
function vector:__tostring()
return "("..tonumber(self.x)..","..tonumber(self.y)..")"
end
function vector.__unm(a)
return new(-a.x, -a.y)
end
function vector.__add(a,b)
assert(isvector(a) and isvector(b), "Add: wrong argument types (<vector> expected)")
return new(a.x+b.x, a.y+b.y)
end
function vector.__sub(a,b)
assert(isvector(a) and isvector(b), "Sub: wrong argument types (<vector> expected)")
return new(a.x-b.x, a.y-b.y)
end
function vector.__mul(a,b)
if type(a) == "number" then
return new(a*b.x, a*b.y)
elseif type(b) == "number" then
return new(b*a.x, b*a.y)
else
assert(isvector(a) and isvector(b), "Mul: wrong argument types (<vector> or <number> expected)")
return a.x*b.x + a.y*b.y
end
end
function vector.__div(a,b)
assert(isvector(a) and type(b) == "number", "wrong argument types (expected <vector> / <number>)")
return new(a.x / b, a.y / b)
end
function vector.__eq(a,b)
return a.x == b.x and a.y == b.y
end
function vector.__lt(a,b)
return a.x < b.x or (a.x == b.x and a.y < b.y)
end
function vector.__le(a,b)
return a.x <= b.x and a.y <= b.y
end
function vector.permul(a,b)
assert(isvector(a) and isvector(b), "permul: wrong argument types (<vector> expected)")
return new(a.x*b.x, a.y*b.y)
end
function vector:len2()
return self.x * self.x + self.y * self.y
end
function vector:len()
return sqrt(self.x * self.x + self.y * self.y)
end
function vector.dist(a, b)
assert(isvector(a) and isvector(b), "dist: wrong argument types (<vector> expected)")
local dx = a.x - b.x
local dy = a.y - b.y
return sqrt(dx * dx + dy * dy)
end
function vector.dist2(a, b)
assert(isvector(a) and isvector(b), "dist: wrong argument types (<vector> expected)")
local dx = a.x - b.x
local dy = a.y - b.y
return (dx * dx + dy * dy)
end
function vector:normalize_inplace()
local l = self:len()
if l > 0 then
self.x, self.y = self.x / l, self.y / l
end
return self
end
function vector:normalized()
return self:clone():normalize_inplace()
end
function vector:rotate_inplace(phi)
local c, s = cos(phi), sin(phi)
self.x, self.y = c * self.x - s * self.y, s * self.x + c * self.y
return self
end
function vector:rotated(phi)
local c, s = cos(phi), sin(phi)
return new(c * self.x - s * self.y, s * self.x + c * self.y)
end
function vector:perpendicular()
return new(-self.y, self.x)
end
function vector:projectOn(v)
assert(isvector(v), "invalid argument: cannot project vector on " .. type(v))
-- (self * v) * v / v:len2()
local s = (self.x * v.x + self.y * v.y) / (v.x * v.x + v.y * v.y)
return new(s * v.x, s * v.y)
end
function vector:mirrorOn(v)
assert(isvector(v), "invalid argument: cannot mirror vector on " .. type(v))
-- 2 * self:projectOn(v) - self
local s = 2 * (self.x * v.x + self.y * v.y) / (v.x * v.x + v.y * v.y)
return new(s * v.x - self.x, s * v.y - self.y)
end
function vector:cross(v)
assert(isvector(v), "cross: wrong argument types (<vector> expected)")
return self.x * v.y - self.y * v.x
end
-- ref.: http://blog.signalsondisplay.com/?p=336
function vector:trim_inplace(maxLen)
local s = maxLen * maxLen / self:len2()
s = (s > 1 and 1) or math.sqrt(s)
self.x, self.y = self.x * s, self.y * s
return self
end
function vector:angleTo(other)
if other then
return atan2(self.y, self.x) - atan2(other.y, other.x)
end
return atan2(self.y, self.x)
end
function vector:trimmed(maxLen)
return self:clone():trim_inplace(maxLen)
end
-- the module
return setmetatable({new = new, isvector = isvector, zero = zero},
{__call = function(_, ...) return new(...) end})

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local anim8 = {
_VERSION = 'anim8 v2.1.0',
_DESCRIPTION = 'An animation library for LÖVE',
_URL = 'https://github.com/kikito/anim8',
_LICENSE = [[
MIT LICENSE
Copyright (c) 2011 Enrique García Cota
Permission is hereby granted, free of charge, to any person obtaining a
copy of this software and associated documentation files (the
"Software"), to deal in the Software without restriction, including
without limitation the rights to use, copy, modify, merge, publish,
distribute, sublicense, and/or sell copies of the Software, and to
permit persons to whom the Software is furnished to do so, subject to
the following conditions:
The above copyright notice and this permission notice shall be included
in all copies or substantial portions of the Software.
THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.
IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY
CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT,
TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE
SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
]]
}
local Grid = {}
local _frames = {}
local function assertPositiveInteger(value, name)
if type(value) ~= 'number' then error(("%s should be a number, was %q"):format(name, tostring(value))) end
if value < 1 then error(("%s should be a positive number, was %d"):format(name, value)) end
if value ~= math.floor(value) then error(("%s should be an integer, was %d"):format(name, value)) end
end
local function createFrame(self, x, y)
local fw, fh = self.frameWidth, self.frameHeight
return love.graphics.newQuad(
self.left + (x-1) * fw + x * self.border,
self.top + (y-1) * fh + y * self.border,
fw,
fh,
self.imageWidth,
self.imageHeight
)
end
local function getGridKey(...)
return table.concat( {...} ,'-' )
end
local function getOrCreateFrame(self, x, y)
if x < 1 or x > self.width or y < 1 or y > self.height then
error(("There is no frame for x=%d, y=%d"):format(x, y))
end
local key = self._key
_frames[key] = _frames[key] or {}
_frames[key][x] = _frames[key][x] or {}
_frames[key][x][y] = _frames[key][x][y] or createFrame(self, x, y)
return _frames[key][x][y]
end
local function parseInterval(str)
if type(str) == "number" then return str,str,1 end
str = str:gsub('%s', '') -- remove spaces
local min, max = str:match("^(%d+)-(%d+)$")
assert(min and max, ("Could not parse interval from %q"):format(str))
min, max = tonumber(min), tonumber(max)
local step = min <= max and 1 or -1
return min, max, step
end
function Grid:getFrames(...)
local result, args = {}, {...}
local minx, maxx, stepx, miny, maxy, stepy
for i=1, #args, 2 do
minx, maxx, stepx = parseInterval(args[i])
miny, maxy, stepy = parseInterval(args[i+1])
for y = miny, maxy, stepy do
for x = minx, maxx, stepx do
result[#result+1] = getOrCreateFrame(self,x,y)
end
end
end
return result
end
local Gridmt = {
__index = Grid,
__call = Grid.getFrames
}
local function newGrid(frameWidth, frameHeight, imageWidth, imageHeight, left, top, border)
assertPositiveInteger(frameWidth, "frameWidth")
assertPositiveInteger(frameHeight, "frameHeight")
assertPositiveInteger(imageWidth, "imageWidth")
assertPositiveInteger(imageHeight, "imageHeight")
left = left or 0
top = top or 0
border = border or 0
local key = getGridKey(frameWidth, frameHeight, imageWidth, imageHeight, left, top, border)
local grid = setmetatable(
{ frameWidth = frameWidth,
frameHeight = frameHeight,
imageWidth = imageWidth,
imageHeight = imageHeight,
left = left,
top = top,
border = border,
width = math.floor(imageWidth/frameWidth),
height = math.floor(imageHeight/frameHeight),
_key = key
},
Gridmt
)
return grid
end
-----------------------------------------------------------
local Animation = {}
local function cloneArray(arr)
local result = {}
for i=1,#arr do result[i] = arr[i] end
return result
end
local function parseDurations(durations, frameCount)
local result = {}
if type(durations) == 'number' then
for i=1,frameCount do result[i] = durations end
else
local min, max, step
for key,duration in pairs(durations) do
assert(type(duration) == 'number', "The value [" .. tostring(duration) .. "] should be a number")
min, max, step = parseInterval(key)
for i = min,max,step do result[i] = duration end
end
end
if #result < frameCount then
error("The durations table has length of " .. tostring(#result) .. ", but it should be >= " .. tostring(frameCount))
end
return result
end
local function parseIntervals(durations)
local result, time = {0},0
for i=1,#durations do
time = time + durations[i]
result[i+1] = time
end
return result, time
end
local Animationmt = { __index = Animation }
local nop = function() end
local function newAnimation(frames, durations, onLoop)
local td = type(durations);
if (td ~= 'number' or durations <= 0) and td ~= 'table' then
error("durations must be a positive number. Was " .. tostring(durations) )
end
onLoop = onLoop or nop
durations = parseDurations(durations, #frames)
local intervals, totalDuration = parseIntervals(durations)
return setmetatable({
frames = cloneArray(frames),
durations = durations,
intervals = intervals,
totalDuration = totalDuration,
onLoop = onLoop,
timer = 0,
position = 1,
status = "playing",
flippedH = false,
flippedV = false
},
Animationmt
)
end
function Animation:clone()
local newAnim = newAnimation(self.frames, self.durations, self.onLoop)
newAnim.flippedH, newAnim.flippedV = self.flippedH, self.flippedV
return newAnim
end
function Animation:flipH()
self.flippedH = not self.flippedH
return self
end
function Animation:flipV()
self.flippedV = not self.flippedV
return self
end
local function seekFrameIndex(intervals, timer)
local high, low, i = #intervals-1, 1, 1
while(low <= high) do
i = math.floor((low + high) / 2)
if timer > intervals[i+1] then low = i + 1
elseif timer <= intervals[i] then high = i - 1
else
return i
end
end
return i
end
function Animation:update(dt)
if self.status ~= "playing" then return end
self.timer = self.timer + dt
local loops = math.floor(self.timer / self.totalDuration)
if loops ~= 0 then
self.timer = self.timer - self.totalDuration * loops
local f = type(self.onLoop) == 'function' and self.onLoop or self[self.onLoop]
f(self, loops)
end
self.position = seekFrameIndex(self.intervals, self.timer)
end
function Animation:pause()
self.status = "paused"
end
function Animation:gotoFrame(position)
self.position = position
self.timer = self.intervals[self.position]
end
function Animation:pauseAtEnd()
self.position = #self.frames
self.timer = self.totalDuration
self:pause()
end
function Animation:pauseAtStart()
self.position = 1
self.timer = 0
self:pause()
end
function Animation:resume()
self.status = "playing"
end
function Animation:draw(image, x, y, r, sx, sy, ox, oy, ...)
local frame = self.frames[self.position]
if self.flippedH or self.flippedV then
r,sx,sy,ox,oy = r or 0, sx or 1, sy or 1, ox or 0, oy or 0
local _,_,w,h = frame:getViewport()
if self.flippedH then
sx = sx * -1
ox = w - ox
end
if self.flippedV then
sy = sy * -1
oy = h - oy
end
end
love.graphics.draw(image, frame, x, y, r, sx, sy, ox, oy, ...)
end
-----------------------------------------------------------
anim8.newGrid = newGrid
anim8.newAnimation = newAnimation
return anim8

View File

@ -224,8 +224,11 @@ function light_world:clear()
light_world:clearBodies() light_world:clearBodies()
end end
function light_world:setTranslation(l, t, s)
self.l, self.t, self.s = l or self.l, t or self.t, s or self.s
end
function light_world:setScale(s) self.s = s end function light_world:setScale(s) self.s = s end
function light_world:setTranslation(l, t, s) self.l, self.t, self.s = l, t, s end
function light_world:clearLights() self.lights = {} end function light_world:clearLights() self.lights = {} end
function light_world:clearBodies() self.body = {} end function light_world:clearBodies() self.body = {} end
function light_world:setAmbientColor(red, green, blue) self.ambient = {red, green, blue} end function light_world:setAmbientColor(red, green, blue) self.ambient = {red, green, blue} end