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ox_lib/imports/zones/client.lua

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local glm = require 'glm'
---@class CZone
---@field id number
---@field coords vector3
---@field distance number
---@field remove fun()
---@field contains fun(self: CZone, coords?: vector3): boolean
---@field onEnter fun(self: CZone)?
---@field onExit fun(self: CZone)?
---@field inside fun(self: CZone)?
2022-10-02 20:19:35 +11:00
---@field [string] any
---@type { [number]: CZone }
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Zones = {}
local function getTriangles(polygon)
local triangles = {}
if polygon:isConvex() then
for i = 2, #polygon - 1 do
triangles[#triangles + 1] = mat(polygon[1], polygon[i], polygon[i + 1])
end
return triangles
end
local verticals = {}
local verticalGroups = {}
for i = 1, #polygon do
local point = polygon[i]
local x = point.x
local vertical = verticalGroups[x]
if vertical then
vertical[#vertical + 1] = point
else
verticalGroups[x] = { point }
verticals[#verticals + 1] = x
end
end
table.sort(verticals, function(a, b)
return a < b
end)
local sides = {}
for i = 1, #polygon do
local point = polygon[i]
local side = {}
for k, v in pairs(verticalGroups) do
local newPoint, d, d2 = glm.line.closestSegment(v[1], vec3(0, 1, 0), point, polygon[i + 1] or polygon[1])
if d ~= 0 and d2 > 0 and d2 < 1 then
local internal
for j = 1, #v do
if polygon:containsSegment(glm.segment.getPoint(v[j], newPoint, 0.01), glm.segment.getPoint(v[j], newPoint, 0.99)) then
internal = true
break
end
end
if internal then
side[#side + 1] = newPoint
v[#v + 1] = newPoint
end
end
end
if next(side) then
sides[point] = side
end
end
for k, v in pairs(verticalGroups) do
table.sort(v, function(a, b)
return a.y < b.y
end)
end
local orderedPoints = {}
local count = 1
for i = 1, #polygon do
local point = polygon[i]
orderedPoints[point] = count
count += 1
local sidePoints = sides[point]
if sidePoints then
local direction = (#point - #(polygon[i + 1] or polygon[1])) > 0
table.sort(sidePoints, function(a, b)
if direction then
return #a > #b
end
return #a < #b
end)
for j = 1, #sidePoints do
orderedPoints[sidePoints[j]] = count
count += 1
end
end
end
for i = 1, #verticals - 1 do
local verticalGroupA = verticalGroups[verticals[i]]
local countA = #verticalGroupA
local sections = {}
for j = i + 1, #verticals do
local verticalGroupB = verticalGroups[verticals[j]]
local countB = #verticalGroupB
local adjacent
for l = 1, countA do
local pointA = verticalGroupA[l]
local numA = orderedPoints[pointA]
for m = 1, countB do
local pointB = verticalGroupB[m]
local numB = orderedPoints[pointB]
local difference = math.abs(numA - numB)
if difference == 1 or difference == count - 2 then
adjacent = true
break
end
end
if adjacent then
break
end
end
if adjacent then
if countA < 3 and countB < 3 then
sections[1] = {
a = verticalGroupA[1],
b = verticalGroupA[2],
c = verticalGroupB[1],
d = verticalGroupB[2],
}
else
local paired = {}
for l = 1, countA do
local pointA = verticalGroupA[l]
local numA = orderedPoints[pointA]
for m = 1, countB do
local pointB = verticalGroupB[m]
local numB = orderedPoints[pointB]
local difference = math.abs(numA - numB)
if difference == 1 or difference == count - 2 then
paired[#paired + 1] = { pointA, pointB }
break
end
end
end
for l = 1, #paired - 1 do
sections[#sections + 1] = {
a = paired[l][1],
b = paired[l + 1][1],
c = paired[l][2],
d = paired[l + 1][2],
}
end
end
end
end
for j = 1, #sections do
local section = sections[j]
if section.a and section.b and section.c and section.d then
triangles[#triangles + 1] = mat(section.a, section.b, section.c)
triangles[#triangles + 1] = mat(section.b, section.c, section.d)
elseif section.a and section.b then
triangles[#triangles + 1] = mat(section.a, section.b, section.c or section.d)
elseif section.c and section.d then
triangles[#triangles + 1] = mat(section.a or section.b, section.c, section.d)
end
end
end
return triangles
end
local function removeZone(self)
Zones[self.id] = nil
end
local inside = {}
local insideCount = 0
local tick
local glm_polygon_contains = glm.polygon.contains
CreateThread(function()
while true do
if insideCount ~= 0 then
table.wipe(inside)
insideCount = 0
end
local coords = GetEntityCoords(cache.ped)
cache.coords = coords
for _, zone in pairs(Zones) do
zone.distance = #(zone.coords - coords)
local radius, contains = zone.radius
if radius then
contains = zone.distance < radius
else
contains = glm_polygon_contains(zone.polygon, coords, zone.thickness / 4)
end
if contains then
if not zone.insideZone then
zone.insideZone = true
if zone.onEnter then
zone:onEnter()
end
end
if zone.inside or zone.debug then
insideCount += 1
inside[insideCount] = zone
end
else
if zone.insideZone then
zone.insideZone = false
if zone.onExit then
zone:onExit()
end
end
if zone.debug then
insideCount += 1
inside[insideCount] = zone
end
end
end
if not tick then
if insideCount ~= 0 then
tick = SetInterval(function()
for i = 1, insideCount do
local zone = inside[i]
if zone.debug then
zone:debug()
if zone.inside and zone.insideZone then
zone:inside()
end
else
zone:inside()
end
end
end)
end
elseif insideCount == 0 then
tick = ClearInterval(tick)
end
Wait(300)
end
end)
local DrawLine = DrawLine
local DrawPoly = DrawPoly
local function debugPoly(self)
for i = 1, #self.triangles do
local triangle = self.triangles[i]
DrawPoly(triangle[1].x, triangle[1].y, triangle[1].z, triangle[2].x, triangle[2].y, triangle[2].z, triangle[3].x
,
triangle[3].y, triangle[3].z, 255, 42, 24, 100)
DrawPoly(triangle[2].x, triangle[2].y, triangle[2].z, triangle[1].x, triangle[1].y, triangle[1].z, triangle[3].x
,
triangle[3].y, triangle[3].z, 255, 42, 24, 100)
end
for i = 1, #self.polygon do
local thickness = vec(0, 0, self.thickness / 2)
local a = self.polygon[i] + thickness
local b = self.polygon[i] - thickness
local c = (self.polygon[i + 1] or self.polygon[1]) + thickness
local d = (self.polygon[i + 1] or self.polygon[1]) - thickness
DrawLine(a.x, a.y, a.z, b.x, b.y, b.z, 255, 42, 24, 225)
DrawLine(a.x, a.y, a.z, c.x, c.y, c.z, 255, 42, 24, 225)
DrawLine(b.x, b.y, b.z, d.x, d.y, d.z, 255, 42, 24, 225)
DrawPoly(a.x, a.y, a.z, b.x, b.y, b.z, c.x, c.y, c.z, 255, 42, 24, 100)
DrawPoly(c.x, c.y, c.z, b.x, b.y, b.z, a.x, a.y, a.z, 255, 42, 24, 100)
DrawPoly(b.x, b.y, b.z, c.x, c.y, c.z, d.x, d.y, d.z, 255, 42, 24, 100)
DrawPoly(d.x, d.y, d.z, c.x, c.y, c.z, b.x, b.y, b.z, 255, 42, 24, 100)
end
end
local function debugSphere(self)
DrawMarker(28, self.coords.x, self.coords.y, self.coords.z, 0.0, 0.0, 0.0, 0.0, 0.0, 0.0, self.radius, self.radius,
self.radius, 255, 42, 24, 100, false, false, 0, true, false, false, false)
end
local function contains(self, coords)
return glm_polygon_contains(self.polygon, coords, self.thickness / 4)
end
local function insideSphere(self, coords)
return #(self.coords - coords) < self.radius
end
local function convertToVector(coords)
local _type = type(coords)
if _type ~= 'vector3' then
if _type == 'table' or _type == 'vector4' then
return vec3(coords[1] or coords.x, coords[2] or coords.y, coords[3] or coords.z)
end
error(("expected type 'vector3' or 'table' (received %s)"):format(_type))
end
return coords
end
lib.zones = {
---@return CZone
poly = function(data)
data.id = #Zones + 1
data.thickness = data.thickness or 4
local pointN = #data.points
local points = table.create(pointN, 0)
for i = 1, pointN do
points[i] = convertToVector(data.points[i])
end
data.polygon = glm.polygon.new(points)
data.coords = data.polygon:centroid()
data.remove = removeZone
data.contains = contains
if data.debug then
data.triangles = getTriangles(data.polygon)
data.debug = debugPoly
end
Zones[data.id] = data
return data
end,
---@return CZone
box = function(data)
data.id = #Zones + 1
data.coords = convertToVector(data.coords)
data.size = data.size and convertToVector(data.size) / 2 or vec3(2)
data.thickness = data.size.z * 2 or 4
data.rotation = quat(data.rotation or 0, vec3(0, 0, 1))
data.polygon = (data.rotation * glm.polygon.new({
vec3(data.size.x, data.size.y, 0),
vec3(-data.size.x, data.size.y, 0),
vec3(-data.size.x, -data.size.y, 0),
vec3(data.size.x, -data.size.y, 0),
}) + data.coords)
data.remove = removeZone
data.contains = contains
if data.debug then
data.triangles = { mat(data.polygon[1], data.polygon[2], data.polygon[3]), mat(data.polygon[1], data.polygon[3], data.polygon[4]) }
data.debug = debugPoly
end
Zones[data.id] = data
return data
end,
---@return CZone
sphere = function(data)
data.id = #Zones + 1
data.coords = convertToVector(data.coords)
data.radius = (data.radius or 2) + 0.0
data.remove = removeZone
data.contains = insideSphere
if data.debug then
data.debug = debugSphere
end
Zones[data.id] = data
return data
end,
}
return lib.zones