forked from VoxeLibre/VoxeLibre
Add in prototype swimming
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@ -2,6 +2,7 @@ local math_random = math.random
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local vector_multiply = vector.multiply
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local vector_multiply = vector.multiply
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local vector_add = vector.add
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local vector_add = vector.add
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local vector_new = vector.new
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local minetest_yaw_to_dir = minetest.yaw_to_dir
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local minetest_yaw_to_dir = minetest.yaw_to_dir
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local minetest_get_item_group = minetest.get_item_group
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local minetest_get_item_group = minetest.get_item_group
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@ -201,11 +202,32 @@ local flop = function(self,dtime)
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mobs.flop(self)
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mobs.flop(self)
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end
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end
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--this is to swap the built in engine acceleration modifier
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local fly_physics_swapper = function(self,inside_fly_node)
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--push non-existing physics switch to new mobs
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self.fly_physics_switch = self.fly_physics_switch or not inside_fly_node
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--should be flying, gravity is applied, switch to floating
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if inside_fly_node and not self.fly_physics_switch then
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self.object:set_acceleration(vector_new(0,0,0))
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self.fly_physics_switch = true
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--not be flying, gravity isn't applied, switch to falling
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elseif not inside_fly_node and self.fly_physics_switch then
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self.pitch = 0
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self.object:set_acceleration(vector_new(0,-self.gravity,0))
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self.fly_physics_switch = false
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end
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end
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local random_pitch_multiplier = {-1,1}
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-- states are executed here
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-- states are executed here
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local fly_state_execution = function(self,dtime)
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local fly_state_execution = function(self,dtime)
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local pos = self.object:get_pos()
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local pos = self.object:get_pos()
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pos.y = pos.y + self.object:get_properties().collisionbox[5]
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local current_node = minetest_get_node(pos).name
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local current_node = minetest_get_node(pos).name
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local inside_fly_node = false
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local inside_fly_node = false
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@ -217,10 +239,12 @@ local fly_state_execution = function(self,dtime)
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end
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end
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end
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end
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--turn gravity on or off
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fly_physics_swapper(self,inside_fly_node)
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--fly properly if inside fly node
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--fly properly if inside fly node
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if inside_fly_node then
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if inside_fly_node then
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if self.state == "stand" then
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if self.state == "stand" then
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--do animation
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--do animation
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@ -231,11 +255,27 @@ local fly_state_execution = function(self,dtime)
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--print("standing")
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--print("standing")
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mobs.set_fly_velocity(self,0)
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elseif self.state == "fly" then
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elseif self.state == "fly" then
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self.walk_timer = self.walk_timer - dtime
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--print("flying")
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--reset the walk timer
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if self.walk_timer <= 0 then
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--re-randomize the walk timer
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self.walk_timer = math.random(1,6) + math.random()
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--set the mob into a random direction
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self.yaw = (math_random() * (math.pi * 2))
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--create a truly random pitch, since there is no easy access to pitch math that I can find
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self.pitch = math_random() * random_pitch_multiplier[math_random(1,2)]
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end
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mobs.set_fly_velocity(self,self.walk_velocity)
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end
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end
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--flop around if not inside fly node
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--flop around if not inside fly node
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else
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else
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@ -99,3 +99,35 @@ mobs.flop = function(self, velocity)
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return true
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return true
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end
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end
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-- move mob in facing direction
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--this has been modified to be internal
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--internal = lua (self.yaw)
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--engine = c++ (self.object:get_yaw())
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mobs.set_fly_velocity = function(self, v)
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local yaw = (self.yaw or 0)
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local pitch = (self.pitch or 0)
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local current_velocity = self.object:get_velocity()
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local goal_velocity = {
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x = (math_sin(yaw) * -v),
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y = pitch,
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z = (math_cos(yaw) * v),
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}
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local new_velocity_addition = vector.subtract(goal_velocity,current_velocity)
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if vector_length(new_velocity_addition) > vector_length(goal_velocity) then
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vector.multiply(new_velocity_addition, (vector_length(goal_velocity) / vector_length(new_velocity_addition)))
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end
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--smooths out mobs a bit
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if vector_length(new_velocity_addition) >= 0.0001 then
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self.object:add_velocity(new_velocity_addition)
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end
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end
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@ -16,6 +16,7 @@ mobs:register_mob("mobs_mc:squid", {
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xp_min = 1,
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xp_min = 1,
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xp_max = 3,
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xp_max = 3,
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armor = 100,
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armor = 100,
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rotate = 270,
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-- FIXME: If the squid is near the floor, it turns black
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-- FIXME: If the squid is near the floor, it turns black
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collisionbox = {-0.4, 0.0, -0.4, 0.4, 0.9, 0.4},
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collisionbox = {-0.4, 0.0, -0.4, 0.4, 0.9, 0.4},
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visual = "mesh",
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visual = "mesh",
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