chroma_solstice/room.lua
2026-08-06 23:15:48 -04:00

672 lines
17 KiB
Lua

Room = class("Room")
require "libs/TSerial"
require "player"
require "box"
require "wall"
require "artifact"
require "npc"
require "art"
require "assorted"
require "switch"
require "door"
require "dialogue_manager"
require "generic_moveable"
require "generic_unmoveable"
function Room:initialize(t)
self.player = {}
self.switches = { red = {}, green = {}, blue = {} }
self.doors = {}
self.collideables = { red = {}, green = {}, blue = {} }
self.activeColors = {red = false, green = false, blue = false}
self.colorsPlayerHas = {}
if t.name then
print("loaded!!")
self:load(t.name)
print(t.name)
if t.player then
for _, color in ipairs(t.player.activeColors) do
self:registerPlayer(Player:new(t.player.x, t.player.y, color), color)
self:setActiveColor(color, true)
end
else
for color, active in pairs(self.activeColors) do
self:registerPlayer(Player:new(1, 1, color), color)
self:setActiveColor(color, true)
end
end
self.exits = t.exits
self.name = t.name
else
self.colorsPlayerHas = {"red", "green", "blue"}
for _, color in ipairs(t.player.activeColors) do
self.player[color] = Player:new(t.player.x, t.player.y, color)
end
self.activeColors = {}
for _, color in ipairs(t.player.activeColors) do self.activeColors[color] = true end
-- for color, coords in pairs(t.player) do
-- self.player[color] = Player:new(coords.x, coords.y, color)
-- self.activeColors[color] = true
-- end
-- for i=1, 1 do
-- local x, y = randomPosition()
-- -- local door = Door:new(x, y, self.colorsPlayerHas)
-- -- table.insert(self.doors, door)
-- for color, active in pairs(self.activeColors) do
-- table.insert(self.collideables[color], Wall:new(x, y, color))
-- end
-- end
-- for i=0, 5 do
-- local x, y = randomPosition()
-- for color, active in pairs(self.activeColors) do
-- table.insert(self.collideables[color], Box:new(x, y, color))
-- end
-- end
for i = 0, 5 do
local x, y = randomPosition()
print(x, y)
local c = randomColor()
table.insert(self.switches[c], Switch:new(x, y, c))
end
for color, active in pairs(self.activeColors) do
local x, y = 6, 3
-- if active then self.collideables[color]["n: " .. x .. ", " .. y] = Ass:new(x, y, color, "animals/processed/", "me_rach") end
local x, y = 1, 1
-- if active then table.insert(self.collideables[color], Ass:new(x, y, color, "nature/", "palm_scaled_reduced")) end
-- local x, y = 7, 7
-- if active then self.collideables[color]["n: " .. x .. ", " .. y] = Ass:new(x, y, color, "food/processed/", "beer_mug") end
-- self.collideables[color]["fpp"] = Artifact:new(6, 6, color)
end
end
self.switchMatrices = {}
self.collidableMatrices = {} --{red = {{...}{...}{...}}, ...
self:createSwitchMatrix()
self:createCollideablesMatrix()
end
function Room:update(dt)
for color, player in pairs(self.player) do
player:update(dt)
end
end
function Room:draw()
for color, player in pairs(self.player) do
player:draw()
end
for color, entityArray in pairs(self.collideables) do
for _, entity in pairs(entityArray) do
entity:draw()
end
end
for color, switchArray in pairs(self.switches) do
for _, switch in pairs(switchArray) do
switch:draw()
end
end
end
function Room:createCollideablesMatrix()
for color, entities in pairs(self.collideables) do
self.collidableMatrices[color] = self:createEntityMatrix(entities)
end
end
function Room:createSwitchMatrix()
for color, switches in pairs(self.switches) do
self.switchMatrices[color] = self:createEntityMatrix(switches)
end
end
function Room:createEntityMatrix(entities)
local matrix = {}
--lets populate it w/ empty stuff first
for i = 1, gridWidth do
local row = {}
for i = 1, gridHeight do
table.insert(row, false)
end
table.insert(matrix, row)
end
--assumes that entities table is set up li_e {index = ent1, anotherIndex = ent2, ...}
for _, entity in pairs(entities) do
for _, occupiedCells in pairs(entity:getOccupiedCells()) do
--we store a table reference so we can call a method on it during a chec_
matrix[occupiedCells.y][occupiedCells.x] = entity
end
end
-- printMatrix(matrix)
return matrix
end
function Room:getCellInMatrix(matrix, cell)
return matrix[cell.y][cell.x]
end
function Room:movePlayer(key)
local moved = false
local previousPositions = {} --these are so we can perform the overlap chec_
local newPositions = {}
for _, color in pairs(self:getActiveColors()) do
local entitiesToPush, entitiesToPull = {}, {}
local pos = self.player[color]:getGridPos()
previousPositions[color] = pos
local x, y = pos.x, pos.y
local dir = {x = 0, y = 0}
local axis
if key == "up" then
dir.y, axis = -1, "y"
elseif key == "down" then
dir.y, axis = 1, "y"
elseif key == "left" then
dir.x, axis = -1, "x"
elseif key == "right" then
dir.x, axis = 1, "x"
end
local move = true
-- PUSHHHHHHHHHHHHHHHHHHHHHH---------------------
local initialTargetCell = {
x = pos.x + dir.x, y = pos.y + dir.y
} -- this is for reference for each color as we change the targetCells table
local initialTargetEntity
if self:isInBounds(initialTargetCell) then
initialTargetEntity = self:getCellInMatrix(self.collidableMatrices[color], initialTargetCell)
end
if initialTargetEntity then initialTargetEntity:bump() end
if not self:isInBounds(initialTargetCell) then
-- let's us move out of bounds to Change Rooms without pulling a bloc_
move = true
elseif initialTargetEntity and initialTargetEntity:canPassOver() then
--we should put this in the else statement actually
move = true
else
local targetCells
targetCells = {initialTargetCell} -- ...we start with our attempted movement...
local doneSearching
while not doneSearching do
nextTargetCells = {} -- ...then we create this array to save our next group of cells
local emptyCells = {}
for _, cell in pairs(targetCells) do
if self:isInBounds(cell) then
local entity = self:getCellInMatrix(self.collidableMatrices[color], cell)
if entity then
--something is here!!
if not entitiesToPush[entity] then --if the entity hasnt been found already
if entity:canMove() then
local projectedCells = entity:getOccupiedCells(dir) -- we project the movement here
entitiesToPush[entity] = entity
for _, projectedCell in ipairs(projectedCells) do
table.insert(nextTargetCells, projectedCell)
end
else
move = false
doneSearching = true
end
end
else
--there's nothin there!!
table.insert(emptyCells, cell)
end
else
--we are out of bounds now
move = false
doneSearching = true
end
end
--if every projected cell is empty then we can do the move
if #emptyCells == #targetCells then
move = true
doneSearching = true
end
targetCells = nextTargetCells
end
--let's get out of this loop b/c if we can't move one color we can't move at all
end
---PULL CHEC
local initialTargetCell = {x = pos.x - dir.x, y = pos.y - dir.y}
local targetCells
local pull
--for each color...
targetCells = {initialTargetCell} -- ...we start with our attempted movement...
local doneSearching
while not doneSearching do
nextTargetCells = {} -- ...then we create this array to save our next group of cells
local emptyCells = {}
for _, cell in pairs(targetCells) do
if self:isInBounds(cell) then
local entity = self:getCellInMatrix(self.collidableMatrices[color], cell)
if entity then
--something is here!!
if not entitiesToPull[entity] then --if the entity hasnt been found already
if entity:canMove() then
local projectedCells = entity:getOccupiedCells(dir) -- we project the movement here
entitiesToPull[entity] = entity
for _, projectedCell in ipairs(projectedCells) do
table.insert(nextTargetCells, projectedCell)
end
else
pull = false
doneSearching = true
end
end
else
--there's nothin there!!
table.insert(emptyCells, cell)
end
else
--we are out of bounds now
doneSearching = true
end
end
--if every projected cell is empty then we can do the move
if #emptyCells == #targetCells then
pull = true
doneSearching = true
end
targetCells = nextTargetCells
end
if move then
for _, entity in pairs(entitiesToPush) do
entity:move(axis, dir[axis])
end
if pull == true then
for _, entity in pairs(entitiesToPull) do
entity:move(axis, dir[axis])
end
end
self.player[color]:move(axis, dir[axis])
moved = true
end
newPositions[color] = self.player[color]:getGridPos()
end
if moved then
self:playerJoinCheck(previousPositions, newPositions)
self:tick()
end
end
function Room:switchPlayerColor(color)
local canSwitch
if self:onlyColorIsActive(color) then
canSwitch = false
else
for _, c in pairs(self:getPossibleColors()) do
if c == color then
self:setActiveColor(c, true)
else
self:setActiveColor(c, false)
end
end
end
self.player[color]:playSwitchSound(canSwitch)
end
function Room:setActiveColor(color, bool)
self.activeColors[color] = bool
end
function Room:getActiveColors()
local colors = {}
for color, active in pairs(self.activeColors) do
if active then
table.insert(colors, color)
end
end
return colors
end
function Room:colorIsActive(color)
if self.activeColors[color] then
return true
end
return false
end
function Room:getInactiveColors()
local colors = {}
for color, active in pairs(self.activeColors) do
if not active then
table.insert(colors, color)
end
end
return colors
end
function Room:getPossibleColors()
local colors = {}
for _, color in ipairs(self.colorsPlayerHas) do
table.insert(colors, color)
end
return colors
end
function Room:onlyColorIsActive(color)
local activeColors = self:getActiveColors()
if #activeColors == 1 and activeColors[1] == color then
return true
else
return false
end
end
function Room:tick()
for color, entityArray in pairs(self.collideables) do
for _, entity in pairs(entityArray) do
entity:tick()
end
end
self:createCollideablesMatrix()
self:createSwitchMatrix()
local setDoorColors = self:switchCheck()
for _, door in pairs(self.doors) do
door:setColors(setDoorColors)
end
self:nextRoomCheck()
end
function Room:playerJoinCheck(previousPositions, newPositions)
local activate = {}
local deactivate = {}
local activeColors = self:getActiveColors()
for _, color in ipairs(activeColors) do
if #activeColors > 1 then
if Entity.positionsAreEqual(previousPositions[color], newPositions[color]) then
table.insert(deactivate, color)
end
end
end
for _, inactiveColor in ipairs(self:getInactiveColors()) do
local overlapping = 0
local activeColors = self:getActiveColors()
local inactivePos = self:getPlayerPos(inactiveColor)
for _, activeColor in ipairs(activeColors) do
local activePos = self:getPlayerPos(activeColor)
if activePos.x == inactivePos.x and activePos.y == inactivePos.y then
overlapping = overlapping + 1
end
end
if overlapping == #activeColors then
table.insert(activate, inactiveColor)
end
end
for _, color in ipairs(activate) do
self:setActiveColor(color, true)
end
for _, color in ipairs(deactivate) do
self:setActiveColor(color, false)
end
end
function Room:getPlayerPos(color)
return self.player[color]:getGridPos()
end
function Room:getPlayerObject(color)
return self.player[color]
end
function Room:getDoors()
return self.doors
end
function Room:getCollideables()
return self.collideables
end
function Room:getSwitches()
return self.switches
end
function Room:switchCheck()
local doorsToUnlock = {}
for color, switchArray in pairs(self.switches) do
local onSwitches = {}
for _, switch in pairs(switchArray) do
local targetCell = self:getCellInMatrix(self.collidableMatrices[color], switch:getGridPos())
if targetCell then
--switch is on
switch:activate()
table.insert(onSwitches, switch) --doesn't rly matter what we put here as long as it's true-y
else
switch:deactivate()
end
end
if #onSwitches == #switchArray then doorsToUnlock[color] = true else doorsToUnlock[color] = false end
end
return doorsToUnlock
end
function Room:isInBounds(cell)
if cell.x > 0 and cell.x <= gridWidth and
cell.y > 0 and cell.y <= gridHeight then
return true
end
return false
end
function Room:nextRoomCheck()
for _, color in ipairs(self:getActiveColors()) do
if not self:isInBounds(self.player[color]:getGridPos()) then
nextRoom(self.player[color]:getGridPos())
return
end
end
end
function Room:createEntity(class, color, x, y)
if class == "Door" then
self:registerDoor(Door:new(x, y))
elseif class == "Wall" then
self:registerCollidable(Wall:new(x, y, color), {color})
elseif class == "Switch" then
self.registerSwitch(Switch:new(x, y), color)
elseif class == "player" then
self:registerPlayer(Player:new(x, y, color), color)
elseif class == "Box" then
self:registerCollidable(Box:new(x, y, color), {color})
elseif class == "npc" then
-- do something soon
elseif class == "Ass" then
--do this later when we have a more definite schema
-- self:registerAssorted(Ass:new(x, y, color, name))
end
end
function Room:registerCollidable(entityPointer, colorArray)
if type(colorArray) ~= "table" then colorArray = {colorArray} end
for _, color in ipairs(colorArray) do
table.insert(self.collideables[color], entityPointer)
end
end
function Room:registerDoor(entityPointer)
table.insert(self.doors, entityPointer)
self:registerCollidable(entityPointer, {"red", "green", "blue"})
end
function Room:registerSwitch(entityPointer, color)
table.insert(self.switches[color], entityPointer)
end
function Room:registerPlayer(entityPointer, color)
table.insert(self.colorsPlayerHas, color)
self.player[color] = entityPointer
end
function Room:getCellFromMousePos(mouseX, mouseY)
local cell = {}
cell.x = math.ceil(mouseX * gridWidth / width)
cell.y = math.ceil(mouseY * gridHeight / height)
return cell
end
function Room:attemptDelete(mouseX, mouseY)
local cell = self:getCellFromMousePos(mouseX, mouseY)
for color, player in pairs(self.player) do
if player:occupiesCell(cell) then
self.player[color] = nil
self.colorsPlayerHas[color] = false
end
end
local entities = {}
for color, entityArray in pairs(self.collideables) do
for index, entity in pairs(entityArray) do
if entity:occupiesCell(cell) then
table.remove(self.collideables[color], index)
end
end
end
for color, switches in pairs(self.switches) do
for index, switch in pairs(switches) do
if switch:occupiesCell(cell) then
print("assssss occupied scellsll")
table.remove(self.switches[color], index)
end
end
end
self:tick()
end
function Room:attemptPlace()
end
function Room:load(name)
local room = love.filesystem.read("rooms/" .. name .. ".sav")
self:deserialize(TSerial.unpack(room))
end
function Room:deserialize(saveTable)
for entityClass, entities in pairs(saveTable) do
for _, entity in pairs(entities) do
self:createEntity(entityClass, entity.color, entity.x, entity.y)
end
end
end
function Room:save()
local name = self.name or "test"
local room = TSerial.pack(self:serialize(), nil, true)
local success = love.filesystem.write("rooms/" .. name .. ".sav", room)
if not success then error "great job u fool" end
end
function Room:serialize()
local level = {}
level.player = {}
for _, color in ipairs(self:getInactiveColors()) do
level.player[color] = self:getPlayerObject(color):getSerializationTable()
end
level.door = {}
for _, door in pairs(self:getDoors()) do
table.insert(level.door, doors:getSerializationTable())
end
for color, collideableArray in pairs(self:getCollideables()) do
for _, collideable in pairs(collideableArray) do
if not collideable:isInstanceOf("Door") then --for now, we might change doors up some
local entityClass = collideable:getClass()
if not level[entityClass] then level[entityClass] = {} end
table.insert(level[entityClass], collideable:getSerializationTable())
end
end
end
level.switch = {}
for color, switchArray in pairs(self:getSwitches()) do
for _, switch in ipairs(switchArray) do
table.insert(level.switch, switch:getSerializationTable())
end
end
return level
end
function nextRoom(pos)
local exit
local newPos = {x = pos.x, y = pos.y}
if pos.x > gridWidth then
exit = "right"
newPos.x = 1
elseif pos.x < 1 then
exit = "left"
newPos.x = gridWidth
elseif pos.y > gridHeight then
exit = "bottom"
newPos.y = 1
elseif pos.y < 1 then
exit = "top"
newPos.y = gridHeight
end
currentRoom:save()
currentRoom = Room:new{
-- name = "test",
player = {
x = newPos.x, y = newPos.y, activeColors = currentRoom:getActiveColors()
}
}
end