forked from VoxeLibre/VoxeLibre
Make mobs flop when outside of flying node
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@ -193,41 +193,54 @@ local fly_state_switch = function(self, dtime)
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self.state_timer = math.random(4,10) + math.random()
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self.state_timer = math.random(4,10) + math.random()
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self.state = fly_state_list_wandering[math.random(1,#fly_state_list_wandering)]
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self.state = fly_state_list_wandering[math.random(1,#fly_state_list_wandering)]
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end
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end
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end
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end
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--this is going to need some more logic gates because birds can flop around
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local flop = function(self,dtime)
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mobs.flop(self)
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end
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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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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_swim_node = false
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local inside_fly_node = false
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--quick scan everything to see if inside fly node
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for _,id in pairs(self.fly_in) do
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for _,id in pairs(self.fly_in) do
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if id == current_node then
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if id == current_node then
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inside_swim_node = true
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inside_fly_node = true
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break
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break
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end
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end
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end
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end
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print(inside_swim_node)
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if self.state == "stand" then
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--fly properly if inside fly node
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if inside_fly_node 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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--mobs.set_mob_animation(self, "stand")
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--mobs.set_mob_animation(self, "stand")
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--set the velocity of the mob
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--set the velocity of the mob
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--mobs.set_velocity(self,0)
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--mobs.set_velocity(self,0)
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--print("standing")
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--print("standing")
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elseif self.state == "fly" then
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elseif self.state == "fly" then
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--print("flying")
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--print("flying")
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end
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--flop around if not inside fly node
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else
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--print("flopping")
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flop(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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@ -1,10 +1,15 @@
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local math_pi = math.pi
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local math_pi = math.pi
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local math_sin = math.sin
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local math_sin = math.sin
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local math_cos = math.cos
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local math_cos = math.cos
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local math_random = math.random
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local DOUBLE_PI = math_pi * 2
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-- localize vector functions
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-- localize vector functions
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local vector_new = vector.new
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local vector_new = vector.new
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local vector_length = vector.length
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local vector_length = vector.length
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local vector_multiply = vector.multiply
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local minetest_yaw_to_dir = minetest.yaw_to_dir
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-- move mob in facing direction
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-- move mob in facing direction
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--this has been modified to be internal
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--this has been modified to be internal
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@ -60,7 +65,37 @@ mobs.jump = function(self, velocity)
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return
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return
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end
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end
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--fallback velocity to allow modularity
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velocity = velocity or 8
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velocity = velocity or 8
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self.object:add_velocity(vector_new(0,velocity,0))
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self.object:add_velocity(vector_new(0,velocity,0))
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end
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--make mobs flop
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mobs.flop = function(self, velocity)
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if self.object:get_velocity().y ~= 0 or not self.old_velocity or (self.old_velocity and self.old_velocity.y > 0) then
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return false
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end
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mobs.set_velocity(self, 0)
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--fallback velocity to allow modularity
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velocity = velocity or 8
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--create a random direction (2d yaw)
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local dir = DOUBLE_PI * math_random()
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--create a random force value
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local force = math_random(0,3) + math_random()
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--convert the yaw to a direction vector then multiply it times the force
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local final_additional_force = vector_multiply(minetest_yaw_to_dir(dir), force)
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--place in the "flop" velocity to make the mob flop
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final_additional_force.y = velocity
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self.object:add_velocity(final_additional_force)
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return true
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end
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end
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