mods that hopefully work for a TechAge-based pack

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# Networks [networks]
A library to build and manage networks based on tubelib2 tubes, pipes, or cables.
![networks](https://github.com/joe7575/networks/blob/main/screenshot.png)
### Power Networks
Power networks consists of following node types:
- Generators, nodes providing power
- Consumers, nodes consuming power
- Storage nodes, nodes storing power
- Cables, to build power connections
- Junctions, to connect point to point connection to networks
- Switches, to turn on/off network segments
All storage nodes in a network form a storage system. Storage systems are
required as buffers. Generators "charge" the storage system, consumers
"discharge" the storage system.
Charging the storage system follows a degressive/adaptive charging curve.
When the storage system e.g. is 80% full, the charging load is continuously reduced.
This ensures that all generators are loaded in a balanced manner.
Cables, junctions, and switches can be hidden under blocks (plastering)
and opened again with a tool.
This makes power installations in buildings more realistic.
The mod uses a whitelist for filling material. The function
`networks.register_filling_items` is used to register node names.
### Liquid Networks
Liquid networks consists of following node types:
- Pumps, nodes pumping liquids from/to tanks
- Tanks, storing liquids
- Junctions, to connect pipes to networks
- Valves, to turn on/off pipe segments
### Control
In addition to any network the 'control' API can be used to send commands
or request data from nodes, specified via 'node_type'.
### Test Nodes
The file `./test/test_power.lua` contains test nodes of each kind of power nodes.
It can be used to play with the features and to study the use of `networks`.
- [G] a generator, which provides 20 units of power every 2 s
- [C] a consumer, which need 5 units of power every 2 s
- [S] a storage with 500 units capacity
All three nodes can be turned on/off by right-clicking.
- cable node for power transportation
- junction node for power distribution
- a power switch to turn on/off consumers
- a tool to hide/open cables and junctions
The file `./test/test_liquid.lua` contains test nodes of each kind of liquid nodes.
- [P] a pump which pumps 2 items every 2 s
- [T] tree types of tanks (empty, milk, water)
- junction node
- a value to connect/disconnect pipes
The file `./test/test_control.lua` contains server [S] and client [C] nodes
to demonstrate simple on/off commands.
All this testing nodes can be enabled via mod settings `networks_test_enabled = true` in `minetest.conf`
### License
Copyright (C) 2021-2023 Joachim Stolberg
Code: Licensed under the GNU AGPL version 3 or later. See LICENSE.txt
Textures: CC BY-SA 3.0
### Dependencies
Required: tubelib2
### History
**2021-05-23 V0.01**
- First shot
**2021-05-24 V0.02**
- Add switch
- Add tool and hide/open feature
- bug fixes and improvements
**2021-05-25 V0.03**
- Add function `networks.get_power_data`
- bug fixes and improvements
**2021-05-29 V0.04**
- bug fixes and improvements
**2021-05-30 V0.05**
- Change power API
**2021-06-03 V0.06**
- Add 'liquid'
- bug fixes and improvements
**2021-06-04 V0.07**
- Add 'control' API
**2021-07-06 V0.08**
- Add 'transfer' functions to the 'power' API
**2021-07-23 V0.09**
- bug fixes and improvements
**2021-09-18 V0.10**
- Add support for colored cables (PR #1 by Thomas--S)
**2022-01-06 V0.11**
- Support for junction rotation added
**2022-09-10 V0.12**
- New API function `networks.liquid.get_liquids` added
**2023-02-19 V0.13**
- New API function `networks.power.get_storage_percent` added
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--[[
Networks
========
Copyright (C) 2021 Joachim Stolberg
AGPL v3
See LICENSE.txt for more information
Control API to control other network nodes which have a control interface
]]--
-- for lazy programmers
local S2P = minetest.string_to_pos
local P2S = function(pos) if pos then return minetest.pos_to_string(pos) end end
local M = minetest.get_meta
local N = tubelib2.get_node_lvm
local CTL = function(pos) return (minetest.registered_nodes[N(pos).name] or {}).control end
networks.control = {}
-- return list of nodes {pos = ..., indir = ...} of given node_type
local function get_network_table(pos, tlib2, outdir, node_type)
local netw = networks.get_network_table(pos, tlib2, outdir)
if netw then
return netw[node_type] or {}
end
return {}
end
-------------------------------------------------------------------------------
-- For all types of nodes
-------------------------------------------------------------------------------
-- names: list of node names
-- control_callbacks = {
-- on_receive = function(pos, tlib2, topic, payload),
-- on_request = function(pos, tlib2, topic), -- returns: response
-- }
function networks.control.register_nodes(names, control_callbacks)
assert(type(control_callbacks) == "table")
for _, name in ipairs(names) do
minetest.override_item(name, {control = control_callbacks})
end
end
-- Send a message with 'topic' string and any 'payload 'to all 'tlib2' network
-- nodes of type 'node_type'.
-- Function returns the number of nodes the message was sent to.
function networks.control.send(pos, tlib2, outdir, node_type, topic, payload)
assert(outdir and node_type and topic)
assert(type(topic) == "string")
local cnt = 0
for _,item in ipairs(get_network_table(pos, tlib2, outdir, node_type)) do
local ctl = CTL(item.pos)
if ctl and ctl.on_receive then
ctl.on_receive(item.pos, tlib2, topic, payload)
cnt = cnt + 1
end
end
return cnt
end
-- Send a request with 'topic' string to all 'tlib2' network
-- nodes of type 'node_type'.
-- Function returns a list with all responses.
function networks.control.request(pos, tlib2, outdir, node_type, topic)
assert(outdir and node_type and topic)
assert(type(topic) == "string")
local t = {}
for _,item in ipairs(get_network_table(pos, tlib2, outdir, node_type)) do
local ctl = CTL(item.pos)
if ctl and ctl.on_request then
t[#t + 1] = ctl.on_request(item.pos, tlib2, topic)
end
end
return t
end
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--[[
Networks
========
Copyright (C) 2021 Joachim Stolberg
AGPL v3
See LICENSE.txt for more information
]]--
-- for lazy programmers
local S2P = minetest.string_to_pos
local P2S = function(pos) if pos then return minetest.pos_to_string(pos) end end
local M = minetest.get_meta
local N = tubelib2.get_node_lvm
local hidden_message = ""
local tFillingMaterial = {}
-- handle old techage names
local function legacy_names(meta)
if meta:contains("techage_hidden_nodename") then
meta:set_string("netw_name", meta:get_string("techage_hidden_nodename"))
meta:set_string("techage_hidden_nodename", "")
end
if meta:contains("tl2_param2") then
meta:set_int("netw_param2", meta:get_int("tl2_param2"))
meta:set_string("tl2_param2", "")
end
end
-------------------------------------------------------------------------------
-- API
-------------------------------------------------------------------------------
function networks.hidden_name(pos)
local meta = M(pos)
legacy_names(meta)
if meta:contains("netw_name") then
return meta:get_string("netw_name")
end
end
function networks.get_nodename(pos)
local meta = M(pos)
legacy_names(meta)
if meta:contains("netw_name") then
return meta:get_string("netw_name")
end
return tubelib2.get_node_lvm(pos).name
end
function networks.get_node(pos)
local meta = M(pos)
legacy_names(meta)
if meta:contains("netw_name") then
return {name = meta:get_string("netw_name"), param2 = meta:get_int("netw_param2")}
end
return tubelib2.get_node_lvm(pos)
end
local get_node = networks.get_node
local get_nodename = networks.get_nodename
-- Override methods of tubelib2 to store tube/cable info as metadata,
-- used for hidden cables/tubes/junctions/switches.
function networks.use_metadata(tlib2)
tlib2.get_primary_node_param2 = function(self, pos, dir)
local npos = vector.add(pos, tubelib2.Dir6dToVector[dir or 0])
if self.primary_node_names[get_nodename(npos)] then
local meta = M(npos)
return meta:get_int("netw_param2"), npos
end
end
tlib2.is_primary_node = function(self, pos, dir)
local npos = vector.add(pos, tubelib2.Dir6dToVector[dir or 0])
return self.primary_node_names[get_nodename(npos)] ~= nil
end
tlib2.get_secondary_node = function(self, pos, dir)
local npos = vector.add(pos, tubelib2.Dir6dToVector[dir or 0])
local node = get_node(npos)
if self.secondary_node_names[node.name] then
return node, npos, true
end
end
tlib2.is_secondary_node = function(self, pos, dir)
local npos = vector.add(pos, tubelib2.Dir6dToVector[dir or 0])
local name = get_nodename(npos)
return self.secondary_node_names[name] ~= nil
end
end
function networks.hide_node(pos, node, placer)
local inv = placer:get_inventory()
local stack = inv:get_stack("main", 1)
local taken = stack:take_item(1)
if taken:get_count() == 1 and tFillingMaterial[taken:get_name()] then
local meta = M(pos)
meta:set_string("netw_name", node.name)
local param2 = 0
local ndef = minetest.registered_nodes[taken:get_name()]
if ndef.paramtype2 and ndef.paramtype2 == "facedir" then
param2 = minetest.dir_to_facedir(placer:get_look_dir(), true)
elseif ndef.paramtype2 and ndef.paramtype2 == "color" then
param2 = taken:get_meta():get_int("palette_index")
end
minetest.swap_node(pos, {name = taken:get_name(), param2 = param2})
inv:set_stack("main", 1, stack)
return true
end
end
function networks.open_node(pos, node, placer)
local name = networks.hidden_name(pos)
local param2
if M(pos):get_int("netw_param2") ~= 0 then
param2 = M(pos):get_int("netw_param2")
else
param2 = M(pos):get_int("netw_param2_copy")
end
minetest.swap_node(pos, {name = name, param2 = param2 % 32 + M(pos):get_int("netw_color_param2")})
local meta = M(pos)
meta:set_string("netw_name", "")
local stack = ItemStack(node.name)
local inv = placer:get_inventory()
local ndef = minetest.registered_nodes[node.name]
if ndef and ndef.paramtype2 == "color" then
stack:get_meta():set_int("palette_index", node.param2)
end
local leftover = inv:add_item("main", stack)
if leftover:get_count() > 0 then
minetest.add_item(pos, leftover)
end
return true
end
-------------------------------------------------------------------------------
-- Patch registered nodes
-------------------------------------------------------------------------------
function networks.register_hidden_message(msg)
hidden_message = msg
end
local function get_new_can_dig(old_can_dig)
return function(pos, player, ...)
if networks.hidden_name(pos) then
if player and player.get_player_name then
minetest.chat_send_player(player:get_player_name(), hidden_message)
end
return false
end
if old_can_dig then
return old_can_dig(pos, player, ...)
else
return true
end
end
end
-- Register item names to be used as filling material to hide tubes/cables
function networks.register_filling_items(names)
for _, name in ipairs(names) do
tFillingMaterial[name] = true
-- Change can_dig for registered filling materials.
local ndef = minetest.registered_nodes[name]
if ndef then
local old_can_dig = ndef.can_dig
minetest.override_item(ndef.name, {
can_dig = get_new_can_dig(old_can_dig)
})
end
end
end
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--[[
Networks
========
Copyright (C) 2021-2023 Joachim Stolberg
AGPL v3
See LICENSE.txt for more information
]]--
networks = {}
-- Version for compatibility checks, see readme.md/history
networks.version = 0.13
if not minetest.global_exists("tubelib2") or tubelib2.version < 2.2 then
minetest.log("error", "[networks] Networks requires tubelib2 version 2.2 or newer!")
return
end
local MP = minetest.get_modpath("networks")
dofile(MP .. "/hidden.lua")
dofile(MP .. "/networks.lua")
dofile(MP .. "/junction.lua")
dofile(MP .. "/observer.lua")
dofile(MP .. "/power.lua")
dofile(MP .. "/liquid.lua")
dofile(MP .. "/control.lua")
if minetest.settings:get_bool("networks_test_enabled") == true then
-- Only for testing/demo purposes
dofile(MP .. "/test/test_liquid.lua")
local Cable = dofile(MP .. "/test/test_power.lua")
assert(loadfile(MP .. "/test/test_control.lua"))(Cable)
dofile(MP .. "/test/test_tool.lua")
end
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--[[
Networks
========
Copyright (C) 2021 Joachim Stolberg
AGPL v3
See LICENSE.txt for more information
]]--
local SideToDir = {B=1, R=2, F=3, L=4, D=5, U=6}
local tubelib2_dir_to_side = tubelib2.dir_to_side
local function bit(p)
return 2 ^ (p - 1) -- 1-based indexing
end
-- Typical call: if hasbit(x, bit(3)) then ...
local function hasbit(x, p)
return x % (p + p) >= p
end
local function setbit(x, p)
return hasbit(x, p) and x or x + p
end
local function get_node_box(val, size, boxes)
local fixed = {{-size, -size, -size, size, size, size}}
for i = 1,6 do
if hasbit(val, bit(i)) then
for _,box in ipairs(boxes[i]) do
table.insert(fixed, box)
end
end
end
return {
type = "fixed",
fixed = fixed,
}
end
-- 'size' is the size of the junction cube without any connection, e.g. 1/8
-- 'boxes' is a table with 6 table elements for the 6 possible connection arms
-- 'tlib2' is the tubelib2 instance
-- 'node' is the node definition with tiles, callback functions, and so on
-- 'index' number for the inventory node (default 0)
function networks.register_junction(name, size, boxes, tlib2, node, index)
local names = {}
for idx = 0,63 do
local ndef = table.copy(node)
if idx == (index or 0) then
ndef.groups.not_in_creative_inventory = 0
else
ndef.groups.not_in_creative_inventory = 1
end
ndef.drawtype = "nodebox"
ndef.paramtype = "light"
ndef.sunlight_propagates = true
ndef.node_box = get_node_box(idx, size, boxes)
ndef.paramtype2 = "facedir"
ndef.on_rotate = screwdriver.disallow
ndef.drop = name..(index or "0")
minetest.register_node(name..idx, ndef)
names[#names + 1] = name..idx
end
return names
end
function networks.junction_type(pos, network, default_side, param2)
local connected = function(self, pos, dir)
if network:is_primary_node(pos, dir) then
local param2, npos = self:get_primary_node_param2(pos, dir)
if param2 then
local d1, d2, _ = self:decode_param2(npos, param2)
dir = networks.Flip[dir]
return d1 == dir or dir == d2
end
end
end
local val = 0
if default_side then
val = setbit(val, bit(SideToDir[default_side]))
end
for dir = 1,6 do
local dir2 = SideToDir[tubelib2_dir_to_side(dir, param2 or 0)]
if network.force_to_use_tubes then
if connected(network, pos, dir) then
val = setbit(val, bit(dir2))
elseif network:is_special_node(pos, dir) then
val = setbit(val, bit(dir2))
end
else
if connected(network, pos, dir) then
val = setbit(val, bit(dir2))
elseif network:is_secondary_node(pos, dir) then
local node = network:get_secondary_node(pos, dir)
if network:is_valid_dir(node, networks.Flip[dir]) then
val = setbit(val, bit(dir2))
end
end
end
end
return val
end
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--[[
Networks
========
Copyright (C) 2021 Joachim Stolberg
AGPL v3
See LICENSE.txt for more information
Liquid API for liquid pumping and storing nodes
]]--
-- for lazy programmers
local S2P = minetest.string_to_pos
local P2S = function(pos) if pos then return minetest.pos_to_string(pos) end end
local M = minetest.get_meta
local N = tubelib2.get_node_lvm
local LQD = function(pos) return (minetest.registered_nodes[N(pos).name] or {}).liquid end
networks.liquid = {}
networks.registered_networks.liquid = {}
-- return list of nodes {pos = ..., indir = ...} of given node_type
local function get_network_table(pos, tlib2, outdir, node_type)
local netw = networks.get_network_table(pos, tlib2, outdir)
if netw then
return netw[node_type] or {}
end
return {}
end
-------------------------------------------------------------------------------
-- For all types of nodes
-------------------------------------------------------------------------------
-- names: list of node names
-- tlib2: tubelib2 instance
-- node_type: one of "pump", "tank", "junc"
-- valid_sides: something like {"L", "R"} or nil
-- liquid_callbacks = {
-- capa = CAPACITY,
-- peek = function(pos, indir), -- returns: liquid name
-- put = function(pos, indir, name, amount), -- returns: liquid leftover or 0
-- take = function(pos, indir, name, amount), -- returns: taken, name
-- untake = function(pos, indir, name, amount), -- returns: leftover
-- }
function networks.liquid.register_nodes(names, tlib2, node_type, valid_sides, liquid_callbacks)
if node_type == "pump" then
assert(not valid_sides or type(valid_sides) == "table")
valid_sides = valid_sides or {"B", "R", "F", "L", "D", "U"}
elseif node_type == "tank" or node_type == "junc" then
assert(not valid_sides or type(valid_sides) == "table")
valid_sides = valid_sides or {"B", "R", "F", "L", "D", "U"}
elseif node_type and type(node_type) == "string" then
valid_sides = valid_sides or {"B", "R", "F", "L", "D", "U"}
else
error("parameter error")
end
if node_type == "tank" then
assert(type(liquid_callbacks) == "table")
end
tlib2:add_secondary_node_names(names)
networks.registered_networks.liquid[tlib2.tube_type] = tlib2
for _, name in ipairs(names) do
local ndef = minetest.registered_nodes[name]
local tbl = ndef.networks or {}
tbl[tlib2.tube_type] = {ntype = node_type}
minetest.override_item(name, {networks = tbl})
minetest.override_item(name, {liquid = liquid_callbacks})
tlib2:set_valid_sides(name, valid_sides)
end
end
-- To be called for each liquid network change via
-- tubelib2_on_update2 or register_on_tube_update2
function networks.liquid.update_network(pos, outdir, tlib2, node)
local ndef = networks.net_def(pos, tlib2.tube_type)
if ndef.ntype == "junc" then
outdir = 0
end
networks.update_network(pos, outdir, tlib2, node)
end
-------------------------------------------------------------------------------
-- Client/pump functions
-------------------------------------------------------------------------------
-- Determine and return liquid 'name' from the
-- remote inventory.
function networks.liquid.peek(pos, tlib2, outdir)
assert(outdir)
for _,item in ipairs(get_network_table(pos, tlib2, outdir, "tank")) do
local liq = LQD(item.pos)
if liq and liq.peek then
return liq.peek(item.pos, item.indir)
end
end
end
-- Add given amount of liquid to the remote inventory.
-- return leftover amount
function networks.liquid.put(pos, tlib2, outdir, name, amount, show_debug_cube)
assert(outdir)
assert(name)
assert(amount and amount > 0)
for _,item in ipairs(get_network_table(pos, tlib2, outdir, "tank")) do
local liq = LQD(item.pos)
if liq and liq.put and liq.peek then
-- wrong items?
local peek = liq.peek(item.pos, item.indir)
if peek and peek ~= name then return amount or 0 end
if show_debug_cube then
networks.set_marker(item.pos, "put", 1.1, 1)
end
amount = liq.put(item.pos, item.indir, name, amount)
if not amount or amount == 0 then break end
end
end
return amount or 0
end
-- Take given amount of liquid from the remote inventory.
-- return taken amount and item name
function networks.liquid.take(pos, tlib2, outdir, name, amount, show_debug_cube)
assert(outdir)
assert(amount and amount > 0)
local taken = 0
for _,item in ipairs(get_network_table(pos, tlib2, outdir, "tank")) do
local liq = LQD(item.pos)
if liq and liq.take then
if show_debug_cube then
networks.set_marker(item.pos, "take", 1.1, 1)
end
taken, name = liq.take(item.pos, item.indir, name, amount)
if taken and name and taken > 0 then
break
end
end
end
return taken, name
end
function networks.liquid.untake(pos, tlib2, outdir, name, amount)
assert(outdir)
assert(name)
assert(amount)
for _,item in ipairs(get_network_table(pos, tlib2, outdir, "tank")) do
local liq = LQD(item.pos)
if liq and liq.untake then
amount = liq.untake(item.pos, item.indir, name, amount)
if not amount or amount == 0 then break end
end
end
return amount or 0
end
-------------------------------------------------------------------------------
-- Server/tank local functions
-------------------------------------------------------------------------------
function networks.liquid.is_empty(nvm)
return not nvm.liquid or (nvm.liquid.amount or 0) <= 0
end
function networks.liquid.get_amount(nvm)
if nvm.liquid and nvm.liquid.amount then
return nvm.liquid.amount
end
return 0
end
function networks.liquid.get_item(nvm)
local itemname = "<empty>"
if nvm.liquid and nvm.liquid.amount and nvm.liquid.amount > 0 and nvm.liquid.name then
itemname = nvm.liquid.name.." "..nvm.liquid.amount
end
return itemname
end
function networks.liquid.srv_peek(nvm)
nvm.liquid = nvm.liquid or {}
nvm.liquid.amount = math.floor((nvm.liquid.amount or 0) + 0.5)
return nvm.liquid.amount > 0 and nvm.liquid.name
end
function networks.liquid.srv_put(nvm, name, amount, capa)
assert(name)
assert(capa and capa > 0)
amount = math.floor((amount or 0) + 0.5)
nvm.liquid = nvm.liquid or {}
nvm.liquid.amount = nvm.liquid.amount or 0
if nvm.liquid.amount == 0 or not nvm.liquid.name then
nvm.liquid.name = name
nvm.liquid.amount = amount
return 0
elseif nvm.liquid.name == name then
nvm.liquid.amount = nvm.liquid.amount or 0
if nvm.liquid.amount + amount <= capa then
nvm.liquid.amount = nvm.liquid.amount + amount
return 0
else
local rest = nvm.liquid.amount + amount - capa
nvm.liquid.amount = capa
return rest
end
end
return amount
end
function networks.liquid.srv_take(nvm, name, amount)
amount = math.floor((amount or 0) + 0.5)
nvm.liquid = nvm.liquid or {}
if not name or nvm.liquid.name == name then
name = nvm.liquid.name
nvm.liquid.amount = nvm.liquid.amount or 0
if nvm.liquid.amount > amount then
nvm.liquid.amount = nvm.liquid.amount - amount
return amount, name
else
local rest = nvm.liquid.amount
local name = nvm.liquid.name
nvm.liquid.amount = 0
nvm.liquid.name = nil
return rest, name
end
end
return 0
end
-------------------------------------------------------------------------------
-- Valve
-------------------------------------------------------------------------------
function networks.liquid.turn_valve_on(pos, tlib2, name_off, name_on)
local node = N(pos)
local meta = M(pos)
if node.name == name_off then
node.name = name_on
minetest.swap_node(pos, node)
tlib2:after_place_tube(pos)
meta:set_int("networks_param2", node.param2)
return true
elseif meta:contains("networks_param2_copy") then
meta:set_int("networks_param2", meta:get_int("networks_param2_copy"))
tlib2:after_place_tube(pos)
return true
end
end
function networks.liquid.turn_valve_off(pos, tlib2, name_off, name_on)
local node = N(pos)
local meta = M(pos)
if node.name == name_on then
node.name = name_off
minetest.swap_node(pos, node)
meta:set_int("networks_param2", 0)
tlib2:after_dig_tube(pos, node)
return true
elseif meta:contains("networks_param2") then
meta:set_int("networks_param2_copy", meta:get_int("networks_param2"))
meta:set_int("networks_param2", 0)
tlib2:after_dig_tube(pos, node)
return true
end
end
-------------------------------------------------------------------------------
-- Info/Tools
-------------------------------------------------------------------------------
-- Return list of liquids of connected tanks
-- Node at pos must be a pump
function networks.liquid.get_liquids(pos, tlib2)
local tbl = {}
for _, dir in ipairs(networks.get_node_connection_dirs(pos, tlib2.tube_type)) do
for _,item in ipairs(get_network_table(pos, tlib2, dir, "tank")) do
local liq = LQD(item.pos)
if liq and liq.peek then
local liq_name = liq.peek(item.pos, item.indir)
if liq_name then
local def = minetest.registered_items[liq_name] or minetest.registered_craftitems[liq_name]
if def then
tbl[def.description] = true
end
end
end
end
end
local out = {}
for k,v in pairs(tbl) do
out[#out + 1] = k
end
return out
end
+4
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@@ -0,0 +1,4 @@
name = networks
depends = screwdriver,tubelib2
description = Build and manage networks based on tubelib2 tubes/pipes/cables
+510
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@@ -0,0 +1,510 @@
--[[
Networks
========
Copyright (C) 2021 Joachim Stolberg
AGPL v3
See LICENSE.txt for more information
]]--
-- for lazy programmers
local S2P = minetest.string_to_pos
local P2S = function(pos) if pos then return minetest.pos_to_string(pos) end end
local M = minetest.get_meta
local N = tubelib2.get_node_lvm
local Networks = {} -- cache for networks: {netw_type = {netID = <network>, ...}, ...}
local NetIDs = {} -- cache for netw IDs: {pos_hash = {outdir = netID, ...}, ...}
local MAX_NUM_NODES = 1000 -- per network including junctions
local TTL = 5 * 60 -- 5 minutes
local Route = {} -- Used to determine the already passed nodes while walking
local NumNodes = 0 -- Used to determine the number of network nodes
local Flip = tubelib2.Turn180Deg
local get_nodename = networks.get_nodename
local get_node = networks.get_node
local tubelib2_get_pos = tubelib2.get_pos
local tubelib2_side_to_dir = tubelib2.side_to_dir
-------------------------------------------------------------------------------
-- Debugging
-------------------------------------------------------------------------------
-- Table for all registered tubelib2 instances
networks.registered_networks = {} -- {api_type = {instance,...}}
-- Maintain simple numbers for the bulky netID hashes
local DbgNetIDs = {}
local DbgCounter = 1
local function netw_num(netID)
if not netID or netID < 1 then
return netID or 0
end
if not DbgNetIDs[netID] then
DbgNetIDs[netID] = DbgCounter
DbgCounter = DbgCounter + 1
end
return DbgNetIDs[netID]
end
local function network_nodes(netID, network)
local tbl = {}
for node_type,table in pairs(network or {}) do
if type(table) == "table" then
tbl[#tbl+1] = "#" .. node_type .. " = " .. #table
end
end
tbl[#tbl+1] = "num_nodes = " .. (network.num_nodes or 0)
return "Network " .. netw_num(netID) .. ": " .. table.concat(tbl, ", ")
end
-- Marker entities for debugging purposes
function networks.set_marker(pos, text, size, ttl)
local marker = minetest.add_entity(pos, "networks:marker_cube")
if marker ~= nil then
marker:set_nametag_attributes({color = "#FFFFFF", text = text})
size = size or 1
marker:set_properties({visual_size = {x = size, y = size}})
if ttl then
minetest.after(ttl, marker.remove, marker)
end
end
end
minetest.register_entity("networks:marker_cube", {
initial_properties = {
visual = "cube",
textures = {
"networks_marker.png",
"networks_marker.png",
"networks_marker.png",
"networks_marker.png",
"networks_marker.png",
"networks_marker.png",
},
physical = false,
visual_size = {x = 1.1, y = 1.1},
collisionbox = {-0.55,-0.55,-0.55, 0.55,0.55,0.55},
glow = 8,
static_save = false,
},
on_punch = function(self)
self.object:remove()
end,
})
-------------------------------------------------------------------------------
-- Helper
-------------------------------------------------------------------------------
-- return the networks table from the node definition
local function net_def(pos, netw_type)
local ndef = minetest.registered_nodes[get_nodename(pos)]
if ndef and ndef.networks then
return ndef.networks[netw_type]
end
error("Node " .. get_nodename(pos) .. " at ".. P2S(pos) .. " has no 'ndef.networks'")
end
local function net_def2(pos, node_name, netw_type)
local ndef = minetest.registered_nodes[node_name]
if ndef and ndef.networks then
return ndef.networks[netw_type]
end
return net_def(pos, netw_type)
end
-- Don't allow direct connections between to nodes of the same type
local function valid_secondary_node_connection(tlib2, pos, dir)
local node1 = tlib2:get_secondary_node(pos, dir)
if node1 then
local node2 = N(pos)
local ndef1 = minetest.registered_nodes[node1.name]
local ndef2 = minetest.registered_nodes[node2.name]
local ntype1 = ((ndef1.networks or {})[tlib2.tube_type] or {}).ntype
local ntype2 = ((ndef2.networks or {})[tlib2.tube_type] or {}).ntype
return ntype1 == "junc" or ntype1 ~= ntype2
end
end
-- Returns true if node is connected with another network node
local function connected(tlib2, pos, dir)
local param2, npos = tlib2:get_primary_node_param2(pos, dir)
if param2 then
local d1, d2, num = tlib2:decode_param2(npos, param2)
if not num then return end
return Flip[dir] == d1 or Flip[dir] == d2
end
-- secondary nodes allowed?
if tlib2.force_to_use_tubes then
return tlib2:is_special_node(pos, dir)
else
return valid_secondary_node_connection(tlib2, pos, dir)
end
end
local function side_to_outdir(pos, side)
return tubelib2.side_to_dir(side, N(pos).param2)
end
-- determine outdir based on node type
local function get_outdir(node_type, indir)
if node_type == "junc" then
return 0 -- same network on all sides
else
return Flip[indir]
end
end
-------------------------------------------------------------------------------
-- Node Connections
-------------------------------------------------------------------------------
-- Get tlib2 connection dirs as table
-- used e.g. for the connection walk
local function get_node_connection_dirs(pos, netw_type)
local val = M(pos):get_int(netw_type.."_conn")
local tbl = {}
if val % 0x40 >= 0x20 then tbl[#tbl+1] = 1 end
if val % 0x20 >= 0x10 then tbl[#tbl+1] = 2 end
if val % 0x10 >= 0x08 then tbl[#tbl+1] = 3 end
if val % 0x08 >= 0x04 then tbl[#tbl+1] = 4 end
if val % 0x04 >= 0x02 then tbl[#tbl+1] = 5 end
if val % 0x02 >= 0x01 then tbl[#tbl+1] = 6 end
return tbl
end
local function get_node_connection_dirs_table(pos, netw_type)
local val = M(pos):get_int(netw_type.."_conn")
local tbl = {}
if val % 0x40 >= 0x20 then tbl[1] = true end
if val % 0x20 >= 0x10 then tbl[2] = true end
if val % 0x10 >= 0x08 then tbl[3] = true end
if val % 0x08 >= 0x04 then tbl[4] = true end
if val % 0x04 >= 0x02 then tbl[5] = true end
if val % 0x02 >= 0x01 then tbl[6] = true end
return tbl
end
-- store all node sides with tube connections as nodemeta
local function store_node_connection_sides(pos, tlib2)
local node = get_node(pos)
local val = 0
for dir = 1,6 do
val = val * 2
if tlib2:is_valid_dir(node, dir) and connected(tlib2, pos, dir) then
val = val + 1
end
end
M(pos):set_int(tlib2.tube_type.."_conn", val)
end
-- If outdir is given, return outdir, otherwise return all valid node dirs with tube connections
local function get_outdirs(pos, tlib2, outdir)
if outdir then
return {outdir}
end
return get_node_connection_dirs(pos, tlib2.tube_type)
end
-------------------------------------------------------------------------------
-- Connection Walk
-------------------------------------------------------------------------------
local function pos_already_reached(pos)
local key = minetest.hash_node_position(pos)
if not Route[key] and NumNodes < MAX_NUM_NODES then
Route[key] = true
NumNodes = NumNodes + 1
return false
end
return true
end
-- check if the given tube dir into the node is valid
local function valid_indir(pos, indir, node, tlib2)
local outdir = Flip[indir]
return tlib2:is_valid_dir(node, outdir)
end
local function is_junction(pos, name, tlib2)
local ndef = net_def2(pos, name, tlib2.tube_type)
if ndef then
return ndef.ntype == "junc"
end
end
-- Do the walk through the tubelib2 network.
-- `indir` is the direction which should not be covered by the walk
-- (coming from there).
-- if outdir is given, only this dir is used
local function connection_walk(pos, outdir, indir, node, tlib2, clbk)
if clbk then clbk(pos, indir, node) end
if outdir or is_junction(pos, node.name, tlib2) then
for _,outdir in ipairs(get_outdirs(pos, tlib2, outdir)) do
local pos2, indir2 = tlib2:get_connected_node_pos(pos, outdir)
local node = get_node(pos2)
if valid_indir(pos2, indir2, node, tlib2) and not pos_already_reached(pos2) then
connection_walk(pos2, nil, indir2, node, tlib2, clbk)
end
end
end
end
local function collect_network_nodes(pos, tlib2, outdir)
local t = minetest.get_us_time()
Route = {}
NumNodes = 0
pos_already_reached(pos)
local netw = {}
local node = N(pos)
local netw_type = tlib2.tube_type
local tbl = get_node_connection_dirs_table(pos, netw_type)
if tbl[outdir] then -- valid conncetion
-- outdir corresponds to the indir coming from
connection_walk(pos, outdir, Flip[outdir], node, tlib2, function(pos, indir, node)
local ndef = net_def2(pos, node.name, netw_type)
if ndef and ndef.ntype then
local ntype = ndef.ntype
if not netw[ntype] then netw[ntype] = {} end
netw[ntype][#netw[ntype] + 1] = {pos = pos, indir = indir}
end
end)
end
netw.ttl = minetest.get_gametime() + TTL
netw.num_nodes = NumNodes
t = minetest.get_us_time() - t
--print("collect_network_nodes in " .. t .. " us", NumNodes, P2S(pos), N(pos).name)
return netw
end
-------------------------------------------------------------------------------
-- Maintain Network
-------------------------------------------------------------------------------
local function set_network(netw_type, netID, network)
assert(netID)
if netID > 0 then
Networks[netw_type] = Networks[netw_type] or {}
Networks[netw_type][netID] = network
Networks[netw_type][netID].ttl = minetest.get_gametime() + TTL
end
end
-- Return network if available, or dummy network.
-- The function updates the network TTL, thus keeping the network alive.
local function get_network(netw_type, netID)
assert(netID)
if netID > 0 then
local netw = Networks[netw_type] and Networks[netw_type][netID]
if netw then
netw.ttl = minetest.get_gametime() + TTL
return netw
end
end
return {num_nodes = 0}
end
local function delete_network(netw_type, netID)
assert(netID)
if netID > 0 then
if Networks[netw_type] and Networks[netw_type][netID] then
Networks[netw_type][netID] = nil
end
end
end
-- Keep data in memory small
local function remove_outdated_networks()
local to_be_deleted = {}
local t = minetest.get_gametime()
for net_name,tbl in pairs(Networks) do
for netID,network in pairs(tbl) do
local valid = (network.ttl or 0) - t
if valid < 0 then
to_be_deleted[#to_be_deleted+1] = {net_name, netID}
end
end
end
for _,item in ipairs(to_be_deleted) do
local net_name, netID = unpack(item)
Networks[net_name][netID] = nil
--print("Network " .. netw_num(netID) .. " timed out")
end
minetest.after(60, remove_outdated_networks)
end
minetest.after(60, remove_outdated_networks)
-------------------------------------------------------------------------------
-- Maintain netID
-------------------------------------------------------------------------------
local function set_netID(pos, outdir, netID)
local hash = minetest.hash_node_position(pos)
NetIDs[hash] = NetIDs[hash] or {}
NetIDs[hash][outdir] = netID
end
local function get_netID(pos, outdir)
local hash = minetest.hash_node_position(pos)
NetIDs[hash] = NetIDs[hash] or {}
return NetIDs[hash][outdir]
end
-- determine network ID (largest hash number of all nodes with given type)
local function determine_netID(netw)
local netID = 0
for node_type, table in pairs(netw) do
if type(table) == "table" then
for _, item in ipairs(netw[node_type] or {}) do
local outdir = Flip[item.indir]
local new = minetest.hash_node_position(item.pos) * 8 + outdir
if netID <= new then
netID = new
end
end
end
end
return netID
end
-- store network ID for each network node
local function store_netID(tlib2, netw, netID)
for node_type, table in pairs(netw) do
if type(table) == "table" then
for _, item in ipairs(table) do
local outdir = get_outdir(node_type, item.indir)
set_netID(item.pos, outdir, netID)
end
end
end
set_network(tlib2.tube_type, netID, netw)
end
-- delete network and netID for all nodes in the network
-- `outdir` shall be 0 for junctions
local function delete_netID(pos, tlib2, outdir)
local netID = get_netID(pos, outdir)
if netID then
local netw = get_network(tlib2.tube_type, netID)
for node_type, table in pairs(netw) do
if type(table) == "table" then
for _, item in ipairs(table) do
local outdir = get_outdir(node_type, item.indir)
set_netID(item.pos, outdir, nil)
end
end
end
set_netID(pos, outdir, nil)
delete_network(tlib2.tube_type, netID)
end
end
-------------------------------------------------------------------------------
-- API Functions
-------------------------------------------------------------------------------
networks.MAX_NUM_NODES = MAX_NUM_NODES
-- Table for a 180 degree turn: indir => outdir and vice versa
networks.Flip = tubelib2.Turn180Deg
-- networks.net_def(pos, netw_type)
networks.net_def = net_def
-- sides: outdir:
-- U
-- | B
-- | / 6 (N)
-- +--|-----+ | 1
-- / o /| | /
-- +--------+ | |/
-- L <----| |o----> R (W) 4 <-------+-------> 2 (O)
-- | o | | /|
-- | / | + / |
-- | / |/ 3 |
-- +-/------+ (S) 5
-- / |
-- F |
-- D
--
-- Determine the pos relative to the given 'pos', 'param2'
-- and the path based on 'sides' like "FUL"
function networks.get_relpos(pos, sides, param2)
local pos1 = {x = pos.x, y = pos.y, z = pos.z}
for side in sides:gmatch(".") do
pos1 = tubelib2_get_pos(pos1, tubelib2_side_to_dir(side, param2))
end
return pos1
end
-- networks.side_to_outdir(pos, side)
networks.side_to_outdir = side_to_outdir
-- networks.is_junction(pos, name, tlib2)
networks.is_junction = is_junction
-- Return a simple number instead of the netID
-- Useful for debuging purposes
-- networks.netw_num(netID)
networks.netw_num = netw_num
-- For debugging purposes
-- networks.network_nodes(netID, network)
networks.network_nodes = network_nodes
-- networks.get_network(netw_type, netID)
networks.get_network = get_network
-- return the networks table from the node definition
-- networks.net_def(pos, netw_type)
networks.net_def = net_def
-- Function returns {outdir} or all node dirs with connections
-- networks.get_outdirs(pos, tlib2, outdir)
networks.get_outdirs = get_outdirs
-- Provide own netID
-- networks.get_netID(pos, outdir)
networks.get_netID = get_netID
-- networks.get_node_connection_dirs(pos, netw_type)
networks.get_node_connection_dirs = get_node_connection_dirs
-- To be called from each node via 'tubelib2_on_update2'
-- 'output' is optional and only needed for nodes with dedicated
-- pipe sides. Junctions have to provide 0 (= same network on all sides).
function networks.update_network(pos, outdir, tlib2, node)
store_node_connection_sides(pos, tlib2) -- update node internal data
delete_netID(pos, tlib2, outdir) -- delete node netIDs and network
end
-- Provide or determine netID
function networks.determine_netID(pos, tlib2, outdir)
assert(outdir)
local netID = get_netID(pos, outdir)
if netID and Networks[tlib2.tube_type] and Networks[tlib2.tube_type][netID] then
return netID
elseif netID == 0 then
return -- no network available
end
local netw = collect_network_nodes(pos, tlib2, outdir)
if netw.num_nodes > 1 then
netID = determine_netID(netw)
store_netID(tlib2, netw, netID)
return netID
end
-- mark as "no network"
set_netID(pos, outdir, 0)
end
-- Provide network with all node tables
function networks.get_network_table(pos, tlib2, outdir)
assert(outdir)
local netID = networks.determine_netID(pos, tlib2, outdir)
if netID and netID > 0 then
return get_network(tlib2.tube_type, netID)
end
end
@@ -0,0 +1,32 @@
--[[
Networks
========
Copyright (C) 2021 Joachim Stolberg
AGPL v3
See LICENSE.txt for more information
Node observer for debugging/testing purposes
]]--
-- for lazy programmers
local S2P = minetest.string_to_pos
local P2S = function(pos) if pos then return minetest.pos_to_string(pos) end end
local M = minetest.get_meta
local N = tubelib2.get_node_lvm
local ObservePos = nil
function networks.register_observe_pos(pos)
ObservePos = pos
end
function networks.node_observer(tag, pos, tbl1, tbl2)
if ObservePos and pos and vector.equals(pos, ObservePos) then
print("##### Node_observer (" .. (minetest.get_gametime() % 100) .. "): '" .. N(pos).name .. "' - " .. tag)
print("tbl1", dump(tbl1), "\ntbl2", dump(tbl2))
end
end
+451
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@@ -0,0 +1,451 @@
--[[
Networks
========
Copyright (C) 2021-2023 Joachim Stolberg
AGPL v3
See LICENSE.txt for more information
Power API for power consuming and generating nodes
]]--
-- for lazy programmers
local S2P = minetest.string_to_pos
local P2S = function(pos) if pos then return minetest.pos_to_string(pos) end end
local M = minetest.get_meta
local N = tubelib2.get_node_lvm
local OBS = networks.node_observer
local Flip = tubelib2.Turn180Deg
networks.power = {}
networks.registered_networks.power = {}
local DEFAULT_DATA = {
curr_load = 0, -- network storage value
max_capa = 0, -- network storage capacity
consumed = 0, -- consumed power by consumers
provided = 0, -- provided power by generators
available = 0, -- max. available generator power
netw_num = 0, -- network number
}
-- Storage parameters:
-- capa = maximum value in power units
-- load = current value in power units
-- level = ratio value (load/capa) (0..1)
local Power = {} -- {netID = {curr_load, max_capa, consumed, provided, available}}
-- Determine load, capa and other power network data
local function get_power_data(pos, tlib2, outdir, netID)
assert(outdir)
local netw = networks.get_network_table(pos, tlib2, outdir) or {}
local max_capa = 1 -- to prevent nan
local max_perf = 0
local curr_load = 0
-- Generators
for _,item in ipairs(netw.gen or {}) do
local ndef = minetest.registered_nodes[N(item.pos).name]
local data = ndef.get_generator_data and ndef.get_generator_data(item.pos, Flip[item.indir], tlib2)
if data then
OBS("get_power_data", item.pos, data)
max_capa = max_capa + (data.capa or 0)
max_perf = max_perf + (data.perf or 0)
curr_load = curr_load + ((data.level or 0) * (data.capa or 0))
end
end
-- Storage systems
for _,item in ipairs(netw.sto or {}) do
local ndef = minetest.registered_nodes[N(item.pos).name]
local data = ndef.get_storage_data and ndef.get_storage_data(item.pos, Flip[item.indir], tlib2)
if data then
OBS("get_power_data", item.pos, data)
max_capa = max_capa + (data.capa or 0)
curr_load = curr_load + ((data.level or 0) * (data.capa or 0))
end
end
Power[netID] = {
curr_load = curr_load, -- network storage value
max_capa = max_capa, -- network storage capacity
max_perf = max_perf, -- max. available power
consumed = 0, -- consumed power
provided = 0, -- provided power
available = 0, -- available power
num_nodes = netw.num_nodes,
}
return Power[netID]
end
-------------------------------------------------------------------------------
-- For all types of nodes
-------------------------------------------------------------------------------
-- names: list of node names
-- tlib2: tubelib2 instance
-- node_type: one of "gen", "con", "sto", "junc"
-- valid_sides: something like {"L", "R"} or nil
function networks.power.register_nodes(names, tlib2, node_type, valid_sides)
if node_type == "gen" then
assert(#valid_sides <= 2)
elseif node_type == "sto" then
assert(#valid_sides == 1)
elseif node_type == "con" or node_type == "junc" then
assert(not valid_sides or type(valid_sides) == "table")
valid_sides = valid_sides or {"B", "R", "F", "L", "D", "U"}
elseif node_type and type(node_type) == "string" then
valid_sides = valid_sides or {"B", "R", "F", "L", "D", "U"}
else
error("parameter error")
end
tlib2:add_secondary_node_names(names)
networks.registered_networks.power[tlib2.tube_type] = tlib2
for _, name in ipairs(names) do
local ndef = minetest.registered_nodes[name]
local tbl = ndef.networks or {}
assert(tbl[tlib2.tube_type] == nil, "more than one call of 'networks.power.register_nodes' for " .. names[1])
tbl[tlib2.tube_type] = {ntype = node_type}
minetest.override_item(name, {networks = tbl})
tlib2:set_valid_sides(name, valid_sides)
end
end
-- To be called for each power network change via
-- tubelib2_on_update2 or register_on_tube_update2
function networks.power.update_network(pos, outdir, tlib2, node)
local ndef = networks.net_def(pos, tlib2.tube_type)
assert(ndef, "node " .. N(pos).name .. " has no 'networks." .. tlib2.tube_type .. "' table")
if ndef.ntype == "junc" then
outdir = 0
end
local netID = networks.get_netID(pos, outdir)
if netID then
Power[netID] = nil
end
networks.update_network(pos, outdir, tlib2, node)
end
-------------------------------------------------------------------------------
-- Consumer
-------------------------------------------------------------------------------
-- Function checks for a power grid, not for enough power
-- Param outdir is optional
function networks.power.power_available(pos, tlib2, outdir)
for _,outdir in ipairs(networks.get_outdirs(pos, tlib2, outdir)) do
local netID = networks.determine_netID(pos, tlib2, outdir)
if netID then
local pwr = Power[netID] or get_power_data(pos, tlib2, outdir, netID)
OBS("power_available", pos, pwr)
return pwr.curr_load > 0
end
end
end
-- Param outdir is optional
function networks.power.consume_power(pos, tlib2, outdir, amount)
assert(amount)
for _,outdir in ipairs(networks.get_outdirs(pos, tlib2, outdir)) do
local netID = networks.determine_netID(pos, tlib2, outdir)
if netID then
local pwr = Power[netID] or get_power_data(pos, tlib2, outdir, netID)
OBS("consume_power", pos, {outdir = outdir, amount = amount}, pwr)
if pwr.curr_load >= amount then
pwr.curr_load = pwr.curr_load - amount
pwr.consumed = pwr.consumed + amount
return amount
else
local consumed = pwr.curr_load
pwr.curr_load = 0
pwr.consumed = pwr.consumed + consumed
return consumed
end
end
end
return 0
end
-------------------------------------------------------------------------------
-- Generator
-------------------------------------------------------------------------------
-- amount is the maximum power, the generator can provide.
-- cp1 and cp2 are control points for the charge regulator.
-- From cp1 the charging power is reduced more and more and reaches zero at cp2.
--
-- A
-- |
-- 100 % |-------------------__
-- | --__
-- | --__
-- | --__
-- --+------------------+---------------+---->
-- | cp1 cp2
--
function networks.power.provide_power(pos, tlib2, outdir, amount, cp1, cp2)
assert(outdir)
assert(amount and amount > 0)
local netID = networks.determine_netID(pos, tlib2, outdir)
if netID then
local pwr = Power[netID] or get_power_data(pos, tlib2, outdir, netID)
local x = pwr.curr_load / pwr.max_capa
OBS("provide_power", pos, {outdir = outdir, amount = amount}, pwr)
pwr.available = pwr.available + amount
amount = math.min(amount, pwr.max_capa - pwr.curr_load)
cp1 = cp1 or 0.8
cp2 = cp2 or 1.0
if x < cp1 then -- charge with full power
pwr.curr_load = pwr.curr_load + amount
pwr.provided = pwr.provided + amount
return amount
elseif x < cp2 then -- charge with reduced power
local factor = 1 - ((x - cp1) / (cp2 - cp1))
local provided = amount * factor
pwr.curr_load = pwr.curr_load + provided
pwr.provided = pwr.provided + provided
return provided
else -- turn off
return 0
end
end
return 0
end
-- Function for generators with storage capacity
function networks.power.get_storage_load(pos, tlib2, outdir, amount)
local netID = networks.determine_netID(pos, tlib2, outdir)
if netID then
local pwr = Power[netID] or get_power_data(pos, tlib2, outdir, netID)
OBS("get_storage_load", pos, pwr)
if pwr.max_capa and pwr.max_capa > 0 then
return pwr.curr_load / pwr.max_capa * amount
else
error("invalid pwr.max_capa", pwr.max_capa)
end
end
return 0
end
-------------------------------------------------------------------------------
-- Storage
-------------------------------------------------------------------------------
-- Function returns a table with storage level as ratio (0..1) and the
-- charging state (1 = charging, -1 = uncharging, or 0)
-- Function provides nil if no network is available
function networks.power.get_storage_data(pos, tlib2, outdir)
assert(outdir)
local netID = networks.determine_netID(pos, tlib2, outdir)
if netID then
local pwr = Power[netID] or get_power_data(pos, tlib2, outdir, netID)
OBS("get_storage_data", pos, pwr)
local charging = (pwr.provided > pwr.consumed and 1) or (pwr.provided < pwr.consumed and -1) or 0
return {level = pwr.curr_load / pwr.max_capa, charging = charging}
end
end
-- To be called for each network storage change (turn on/off of storage/generator nodes)
function networks.power.start_storage_calc(pos, tlib2, outdir)
assert(outdir)
local netID = networks.determine_netID(pos, tlib2, outdir)
OBS("start_storage_calc", pos)
if netID then
Power[netID] = nil
end
end
-------------------------------------------------------------------------------
-- Transformer
-------------------------------------------------------------------------------
-- Charge transfer in both directions between network 1 and network 2
-- 'netw1' and 'netw2' are tubelib2 network instances.
-- Function returns a table with result values for:
-- {curr_load1, curr_load2, max_capa1, max_capa2, moved}
function networks.power.transfer_duplex(pos, netw1, outdir1, netw2, outdir2, amount)
local netID1 = networks.determine_netID(pos, netw1, outdir1)
local netID2 = networks.determine_netID(pos, netw2, outdir2)
if netID1 and netID2 then
local pwr1 = Power[netID1] or get_power_data(pos, netw1, outdir1, netID1)
local pwr2 = Power[netID2] or get_power_data(pos, netw2, outdir2, netID2)
local lvl = pwr1.curr_load / pwr1.max_capa - pwr2.curr_load / pwr2.max_capa
local moved
pwr2.available = pwr2.available + amount
pwr1.available = pwr1.available + amount
if lvl > 0 then
-- transfer from netw1 to netw2
moved = math.min(amount, lvl * math.min(pwr1.max_capa, pwr2.max_capa))
moved = math.max(moved, 0)
pwr1.curr_load = pwr1.curr_load - moved
pwr2.curr_load = pwr2.curr_load + moved
pwr1.consumed = (pwr1.consumed or 0) + moved
pwr2.provided = (pwr2.provided or 0) + moved
elseif lvl < 0 then
-- transfer from netw2 to netw1
moved = math.min(amount, lvl * math.min(pwr1.max_capa, pwr2.max_capa))
moved = math.max(moved, 0)
pwr2.curr_load = pwr2.curr_load - moved
pwr1.curr_load = pwr1.curr_load + moved
pwr2.consumed = (pwr2.consumed or 0) + moved
pwr1.provided = (pwr1.provided or 0) + moved
else
moved = 0
end
OBS("transfer_duplex", pos, pwr1, pwr2)
return {
curr_load1 = pwr1.curr_load,
curr_load2 = pwr2.curr_load,
max_capa1 = pwr1.max_capa,
max_capa2 = pwr2.max_capa,
moved = moved}
end
end
-- Charge transfer in one direction from network 1 to network 2
-- 'netw1' and 'netw2' are tubelib2 network instances.
-- Function returns a table with result values for:
-- {curr_load1, curr_load2, max_capa1, max_capa2, moved}
function networks.power.transfer_simplex(pos, netw1, outdir1, netw2, outdir2, amount)
local netID1 = networks.determine_netID(pos, netw1, outdir1)
local netID2 = networks.determine_netID(pos, netw2, outdir2)
if netID1 and netID2 then
local pwr1 = Power[netID1] or get_power_data(pos, netw1, outdir1, netID1)
local pwr2 = Power[netID2] or get_power_data(pos, netw2, outdir2, netID2)
local lvl = pwr1.curr_load / pwr1.max_capa - pwr2.curr_load / pwr2.max_capa
local moved
pwr2.available = pwr2.available + amount
if lvl > 0 then
-- transfer from netw1 to netw2
moved = math.min(amount, lvl * math.min(pwr1.max_capa, pwr2.max_capa))
moved = math.max(moved, 0)
pwr1.curr_load = pwr1.curr_load - moved
pwr2.curr_load = pwr2.curr_load + moved
pwr1.consumed = (pwr1.consumed or 0) + moved
pwr2.provided = (pwr2.provided or 0) + moved
else
moved = 0
end
OBS("transfer_simplex", pos, pwr1, pwr2)
return {
curr_load1 = pwr1.curr_load,
curr_load2 = pwr2.curr_load,
max_capa1 = pwr1.max_capa,
max_capa2 = pwr2.max_capa,
moved = moved}
end
end
-------------------------------------------------------------------------------
-- Switch
-------------------------------------------------------------------------------
function networks.power.turn_switch_on(pos, tlib2, name_off, name_on)
local node = N(pos)
local meta = M(pos)
local changed = false
if node.name == name_off then
node.name = name_on
changed = true
elseif meta:get_string("netw_name") == name_off then
meta:set_string("netw_name", name_on)
else
return false
end
if meta:contains("netw_param2") then
meta:set_int("netw_param2", meta:get_int("netw_param2_copy"))
else
node.param2 = meta:get_int("netw_param2_copy")
end
meta:set_int("netw_param2_copy", 0)
if changed then
minetest.swap_node(pos, node)
end
tlib2:after_place_tube(pos)
return true
end
function networks.power.turn_switch_off(pos, tlib2, name_off, name_on)
local node = N(pos)
local meta = M(pos)
local changed = false
if node.name == name_on then
node.name = name_off
changed = true
elseif meta:get_string("netw_name") == name_on then
meta:set_string("netw_name", name_off)
else
return false
end
if meta:contains("netw_param2") then
meta:set_int("netw_param2_copy", meta:get_int("netw_param2"))
--meta:set_int("netw_param2", 0)
else
meta:set_int("netw_param2_copy", node.param2)
end
if changed then
minetest.swap_node(pos, node)
end
if meta:contains("netw_param2") then
node.param2 = meta:get_int("netw_param2")
end
tlib2:after_dig_tube(pos, node)
return true
end
-------------------------------------------------------------------------------
-- Statistics
-------------------------------------------------------------------------------
function networks.power.get_network_data(pos, tlib2, outdir)
for _,outdir in ipairs(networks.get_outdirs(pos, tlib2, outdir)) do
local netID = networks.determine_netID(pos, tlib2, outdir)
if netID then
local pwr = Power[netID] or get_power_data(pos, tlib2, outdir, netID)
local consumed, provided, available
if pwr.available > 0 and pwr.max_perf > 0 then
local fac = pwr.max_perf / pwr.available
available = pwr.max_perf
provided = pwr.provided * fac
consumed = pwr.consumed * fac
else
available = pwr.max_perf
provided = 0
consumed = pwr.consumed
end
local res = {
curr_load = pwr.curr_load, -- network storage value
max_capa = pwr.max_capa, -- network storage capacity
consumed = consumed, -- consumed power by consumers
provided = provided, -- provided power by generators
available = available, -- max. available generator power
netw_num = networks.netw_num(netID), -- network number
}
pwr.consumed = 0
pwr.provided = 0
pwr.available = 0
return res
end
end
return DEFAULT_DATA
end
function networks.power.get_storage_percent(pos, tlib2, outdir)
assert(outdir)
local netID = networks.determine_netID(pos, tlib2, outdir)
if netID then
local pwr = Power[netID] or get_power_data(pos, tlib2, outdir, netID)
return (pwr.curr_load or 0) * 100 / (pwr.max_capa or 1)
end
return 0
end
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@@ -0,0 +1,2 @@
# Enable some nodes for testing/demo purposes
networks_test_enabled (test nodes enabled) bool false
@@ -0,0 +1,139 @@
--[[
Networks
========
Copyright (C) 2021 Joachim Stolberg
AGPL v3
See LICENSE.txt for more information
]]--
-- for lazy programmers
local P2S = function(pos) if pos then return minetest.pos_to_string(pos) end end
local S2P = minetest.string_to_pos
local M = minetest.get_meta
local Cable = ...
local power = networks.power
local control = networks.control
-------------------------------------------------------------------------------
-- Client (sender)
-------------------------------------------------------------------------------
minetest.register_node("networks:client", {
description = "Client",
tiles = {
-- up, down, right, left, back, front
'networks_con.png^[colorize:#F05100:60',
'networks_con.png^[colorize:#F05100:60',
'networks_con.png^[colorize:#F05100:60',
'networks_con.png^[colorize:#F05100:60',
'networks_con.png^[colorize:#F05100:60',
'networks_conn.png^[colorize:#F05100:60',
},
after_place_node = function(pos)
local outdir = networks.side_to_outdir(pos, "F")
M(pos):set_int("outdir", outdir)
M(pos):set_string("infotext", "off")
Cable:after_place_node(pos, {outdir})
tubelib2.init_mem(pos)
end,
after_dig_node = function(pos, oldnode, oldmetadata)
local outdir = tonumber(oldmetadata.fields.outdir or 0)
Cable:after_dig_node(pos, {outdir})
tubelib2.del_mem(pos)
end,
on_rightclick = function(pos, node, clicker)
local mem = tubelib2.get_mem(pos)
local outdir = M(pos):get_int("outdir")
local cnt
if mem.on then
cnt = control.send(pos, Cable, outdir, "server", "off")
M(pos):set_string("infotext", "off")
mem.on = false
else
cnt = control.send(pos, Cable, outdir, "server", "on")
M(pos):set_string("infotext", "on")
mem.on = true
end
print("Command sent to " .. cnt .. " nodes.")
end,
paramtype2 = "facedir",
on_rotate = screwdriver.disallow,
is_ground_content = false,
groups = {crumbly = 2, cracky = 2, snappy = 2},
sounds = default.node_sound_defaults(),
})
power.register_nodes({"networks:client"}, Cable, "client")
control.register_nodes({"networks:client"}, {}) -- no callbacks
-------------------------------------------------------------------------------
-- Server (receiver)
-------------------------------------------------------------------------------
local function swap_node(pos, name)
local node = tubelib2.get_node_lvm(pos)
if node.name == name then
return
end
node.name = name
minetest.swap_node(pos, node)
end
minetest.register_node("networks:server_off", {
description = "Server",
tiles = {
-- up, down, right, left, back, front
"networks_sto.png^[colorize:#F05100:60",
},
after_place_node = function(pos)
Cable:after_place_node(pos)
end,
after_dig_node = function(pos)
Cable:after_dig_node(pos)
end,
paramtype2 = "facedir",
on_rotate = screwdriver.disallow,
is_ground_content = false,
groups = {crumbly = 2, cracky = 2, snappy = 2},
sounds = default.node_sound_defaults(),
})
minetest.register_node("networks:server_on", {
description = "Server",
tiles = {
-- up, down, right, left, back, front
"networks_sto.png^[colorize:#F05100:60",
},
after_place_node = function(pos)
Cable:after_place_node(pos)
end,
after_dig_node = function(pos)
Cable:after_dig_node(pos)
end,
paramtype = "light",
light_source = 8,
paramtype2 = "facedir",
drop = "networks:server_off",
groups = {crumbly = 2, cracky = 2, snappy = 2, not_in_creative_inventory = 1},
is_ground_content = false,
sounds = default.node_sound_defaults(),
})
power.register_nodes({"networks:server_off", "networks:server_on"}, Cable, "server")
control.register_nodes({"networks:server_off", "networks:server_on"}, {
on_receive = function(pos, tlib2, topic, payload)
if topic == "on" then
swap_node(pos, "networks:server_on")
elseif topic == "off" then
swap_node(pos, "networks:server_off")
end
end,
on_request = function(pos, tlib2, topic)
return false
end,
}
)
@@ -0,0 +1,430 @@
--[[
Networks
========
Copyright (C) 2021 Joachim Stolberg
AGPL v3
See LICENSE.txt for more information
]]--
-- for lazy programmers
local P2S = function(pos) if pos then return minetest.pos_to_string(pos) end end
local S2P = minetest.string_to_pos
local M = minetest.get_meta
local CYCLE_TIME = 2
local STORAGE_CAPA = 500
local AMOUNT = 2
local liquid = networks.liquid
-------------------------------------------------------------------------------
-- Pipe
-------------------------------------------------------------------------------
local Pipe = tubelib2.Tube:new({
dirs_to_check = {1,2,3,4,5,6},
max_tube_length = 100,
tube_type = "liq",
primary_node_names = {"networks:pipeS", "networks:pipeA", "networks:valve_on"},
secondary_node_names = {}, -- Names will be added via 'liquids.register_nodes'
after_place_tube = function(pos, param2, tube_type, num_tubes, tbl)
local name = minetest.get_node(pos).name
if name == "networks:valve_on" then
minetest.swap_node(pos, {name = "networks:valve_on", param2 = param2})
elseif name == "networks:valve_off" then
minetest.swap_node(pos, {name = "networks:valve_off", param2 = param2})
else
minetest.swap_node(pos, {name = "networks:pipe"..tube_type, param2 = param2})
end
end,
})
-- Use global callback instead of node related functions
Pipe:register_on_tube_update2(function(pos, outdir, tlib2, node)
liquid.update_network(pos, outdir, tlib2, node)
end)
minetest.register_node("networks:pipeS", {
description = "Pipe",
tiles = { -- Top, base, right, left, front, back
"networks_cable.png^[colorize:#007577:60",
"networks_cable.png^[colorize:#007577:60",
"networks_cable.png^[colorize:#007577:60",
"networks_cable.png^[colorize:#007577:60",
"networks_hole.png",
"networks_hole.png",
},
after_place_node = function(pos, placer, itemstack, pointed_thing)
if not Pipe:after_place_tube(pos, placer, pointed_thing) then
minetest.remove_node(pos)
return true
end
return false
end,
after_dig_node = function(pos, oldnode, oldmetadata, digger)
Pipe:after_dig_tube(pos, oldnode, oldmetadata)
end,
paramtype2 = "facedir",
drawtype = "nodebox",
node_box = {
type = "fixed",
fixed = {
{-3/16, -3/16, -4/8, 3/16, 3/16, 4/8},
},
},
on_rotate = screwdriver.disallow,
paramtype = "light",
use_texture_alpha = "clip",
sunlight_propagates = true,
is_ground_content = false,
groups = {crumbly = 2, cracky = 2, snappy = 2},
sounds = default.node_sound_defaults(),
})
minetest.register_node("networks:pipeA", {
description = "Pipe",
tiles = { -- Top, base, right, left, front, back
"networks_cable.png^[colorize:#007577:60",
"networks_hole.png^[colorize:#007577:60",
"networks_cable.png^[colorize:#007577:60",
"networks_cable.png^[colorize:#007577:60",
"networks_cable.png^[colorize:#007577:60",
"networks_hole.png^[colorize:#007577:60",
},
after_dig_node = function(pos, oldnode, oldmetadata, digger)
Pipe:after_dig_tube(pos, oldnode, oldmetadata)
end,
paramtype2 = "facedir",
drawtype = "nodebox",
node_box = {
type = "fixed",
fixed = {
{-3/16, -4/8, -3/16, 3/16, 3/16, 3/16},
{-3/16, -3/16, -4/8, 3/16, 3/16, -3/16},
},
},
on_rotate = screwdriver.disallow,
paramtype = "light",
use_texture_alpha = "clip",
sunlight_propagates = true,
is_ground_content = false,
groups = {crumbly = 2, cracky = 2, snappy = 2, test_trowel = 1, not_in_creative_inventory=1},
sounds = default.node_sound_defaults(),
drop = "networks:pipeS",
})
local size = 3/16
local Boxes = {
{{-size, -size, size, size, size, 0.5 }}, -- z+
{{-size, -size, -size, 0.5, size, size}}, -- x+
{{-size, -size, -0.5, size, size, size}}, -- z-
{{-0.5, -size, -size, size, size, size}}, -- x-
{{-size, -0.5, -size, size, size, size}}, -- y-
{{-size, -size, -size, size, 0.5, size}}, -- y+
}
local names = networks.register_junction("networks:junction", size, Boxes, Pipe, {
description = "Junction",
tiles = {"networks_junction.png^[colorize:#007577:60"},
after_place_node = function(pos, placer, itemstack, pointed_thing)
local name = "networks:junction" .. networks.junction_type(pos, Pipe)
minetest.swap_node(pos, {name = name, param2 = 0})
Pipe:after_place_node(pos)
end,
-- junction needs own 'tubelib2_on_update2' to be able to call networks.junction_type
tubelib2_on_update2 = function(pos, outdir, tlib2, node)
local name = "networks:junction" .. networks.junction_type(pos, Pipe)
minetest.swap_node(pos, {name = name, param2 = 0})
liquid.update_network(pos, 0, tlib2, node)
end,
after_dig_node = function(pos, oldnode, oldmetadata, digger)
Pipe:after_dig_node(pos)
end,
use_texture_alpha = "clip",
is_ground_content = false,
groups = {crumbly = 2, cracky = 2, snappy = 2},
sounds = default.node_sound_defaults(),
}, 63)
liquid.register_nodes(names, Pipe, "junc")
-------------------------------------------------------------------------------
-- Pump
-------------------------------------------------------------------------------
local function swap_node(pos, name)
local node = tubelib2.get_node_lvm(pos)
if node.name == name then
return
end
node.name = name
minetest.swap_node(pos, node)
end
local function turn_on(pos, mem)
swap_node(pos, "networks:pump_on")
M(pos):set_string("infotext", "pumping")
mem.running = true
-- enable marker cube
mem.dbg_cycles = 5
minetest.get_node_timer(pos):start(CYCLE_TIME)
end
local function turn_off(pos, mem)
swap_node(pos, "networks:pump_off")
M(pos):set_string("infotext", "off")
mem.running = false
minetest.get_node_timer(pos):stop()
end
local function on_rightclick(pos, node, clicker)
local mem = tubelib2.get_mem(pos)
if not mem.running then
turn_on(pos, mem)
else
turn_off(pos, mem)
end
end
local function pumping(pos)
local mem = tubelib2.get_mem(pos)
local outdir = M(pos):get_int("outdir")
local taken, name = liquid.take(pos, Pipe, networks.Flip[outdir], nil, AMOUNT, mem.dbg_cycles > 0)
if taken > 0 then
print("pumping " .. name .. " " .. taken)
local leftover = liquid.put(pos, Pipe, outdir, name, taken, mem.dbg_cycles > 0)
if leftover and leftover > 0 then
liquid.untake(pos, Pipe, networks.Flip[outdir], name, leftover)
if leftover == taken then
turn_off(pos, mem)
return false
end
end
else
print("pumping -")
end
mem.dbg_cycles = mem.dbg_cycles - 1
return true
end
local function after_place_node(pos)
local outdir = networks.side_to_outdir(pos, "B")
M(pos):set_int("outdir", outdir)
Pipe:after_place_node(pos, {outdir})
M(pos):set_string("infotext", "off")
tubelib2.init_mem(pos)
end
local function after_dig_node(pos, oldnode, oldmetadata)
local outdir = tonumber(oldmetadata.fields.outdir or 0)
Pipe:after_dig_node(pos, {outdir})
tubelib2.del_mem(pos)
end
minetest.register_node("networks:pump_off", {
description = "Pump",
tiles = {
-- up, down, right, left, back, front
'networks_arrow.png^[colorize:#007577:60',
'networks_pump.png^[colorize:#007577:60',
'networks_pump.png^[colorize:#007577:60',
'networks_pump.png^[colorize:#007577:60',
'networks_conn.png^[colorize:#007577:60',
'networks_conn.png^[colorize:#007577:60',
},
after_place_node = after_place_node,
after_dig_node = after_dig_node,
on_timer = pumping,
on_rightclick = on_rightclick,
paramtype2 = "facedir",
on_rotate = screwdriver.disallow,
is_ground_content = false,
groups = {crumbly = 2, cracky = 2, snappy = 2},
sounds = default.node_sound_defaults(),
})
minetest.register_node("networks:pump_on", {
description = "Pump",
tiles = {
-- up, down, right, left, back, front
'networks_arrow.png^[colorize:#007577:60',
'networks_pump.png^[colorize:#007577:60',
'networks_pump.png^[colorize:#007577:60',
'networks_pump.png^[colorize:#007577:60',
'networks_conn.png^[colorize:#007577:60',
'networks_conn.png^[colorize:#007577:60',
},
after_place_node = after_place_node,
after_dig_node = after_dig_node,
on_timer = pumping,
on_rightclick = on_rightclick,
paramtype = "light",
light_source = 8,
paramtype2 = "facedir",
diggable = false,
drop = "",
groups = {not_in_creative_inventory = 1},
is_ground_content = false,
sounds = default.node_sound_defaults(),
})
-- Pumps have to provide one output and one input side
liquid.register_nodes({"networks:pump_off", "networks:pump_on"}, Pipe, "pump", {"F", "B"}, {})
-------------------------------------------------------------------------------
-- Tank
-------------------------------------------------------------------------------
local function register_tank(name, description, liquid_name, liquid_amount)
minetest.register_node(name, {
description = description,
tiles = {
-- up, down, right, left, back, front
"networks_tank.png^[colorize:#007577:60",
"networks_tank.png^[colorize:#007577:60",
"networks_tank.png^[colorize:#007577:60",
"networks_tank.png^[colorize:#007577:60",
"networks_tank.png^[colorize:#007577:60",
'networks_tank.png^[colorize:#007577:60',
},
after_place_node = function(pos)
Pipe:after_place_node(pos)
local mem = tubelib2.init_mem(pos)
mem.liquid = {}
mem.liquid.name = liquid_name
mem.liquid.amount = liquid_amount
M(pos):set_string("infotext", networks.liquid.get_item(mem))
minetest.get_node_timer(pos):start(CYCLE_TIME)
end,
after_dig_node = function(pos, oldnode, oldmetadata)
Pipe:after_dig_node(pos)
tubelib2.del_mem(pos)
end,
on_timer = function(pos, elapsed)
local mem = tubelib2.get_mem(pos)
M(pos):set_string("infotext", networks.liquid.get_item(mem))
return true
end,
paramtype2 = "facedir",
on_rotate = screwdriver.disallow,
is_ground_content = false,
groups = {crumbly = 2, cracky = 2, snappy = 2},
sounds = default.node_sound_defaults(),
})
end
-- 3 types of test tanks
register_tank("networks:tank1", "Water Tank", "water", STORAGE_CAPA)
register_tank("networks:tank2", "Milk Tank", "milk", STORAGE_CAPA)
register_tank("networks:tank3", "Empty Tank", nil, 0)
liquid.register_nodes({"networks:tank1", "networks:tank2", "networks:tank3"},
Pipe, "tank", nil, {
capa = STORAGE_CAPA,
peek = function(pos, indir)
local mem = tubelib2.get_mem(pos)
return liquid.srv_peek(mem)
end,
put = function(pos, indir, name, amount)
local mem = tubelib2.get_mem(pos)
return liquid.srv_put(mem, name, amount, STORAGE_CAPA)
end,
take = function(pos, indir, name, amount)
local mem = tubelib2.get_mem(pos)
return liquid.srv_take(mem, name, amount)
end,
untake = function(pos, indir, name, amount)
local mem = tubelib2.get_mem(pos)
return liquid.srv_put(mem, name, amount, STORAGE_CAPA)
end,
}
)
-------------------------------------------------------------------------------
-- Valve
-------------------------------------------------------------------------------
local node_box = {
type = "fixed",
fixed = {
{-5/16, -5/16, -4/8, 5/16, 5/16, 4/8},
},
}
-- The on-valve is a "primary node" like pipes
minetest.register_node("networks:valve_on", {
description = "Valve",
paramtype = "light",
drawtype = "nodebox",
node_box = node_box,
tiles = {
"networks_switch_on.png^[transformR90^[colorize:#007577:60",
"networks_switch_on.png^[transformR90^[colorize:#007577:60",
"networks_switch_on.png^[colorize:#007577:60",
"networks_switch_on.png^[colorize:#007577:60",
"networks_switch_hole.png^[colorize:#007577:60",
"networks_switch_hole.png^[colorize:#007577:60",
},
after_place_node = function(pos, placer, itemstack, pointed_thing)
if not Pipe:after_place_tube(pos, placer, pointed_thing) then
minetest.remove_node(pos)
return true
end
return false
end,
on_rightclick = function(pos, node, clicker)
if liquid.turn_valve_off(pos, Pipe, "networks:valve_off", "networks:valve_on") then
minetest.sound_play("doors_glass_door_open", {
pos = pos,
gain = 1,
max_hear_distance = 5})
end
end,
after_dig_node = function(pos, oldnode, oldmetadata, digger)
Pipe:after_dig_tube(pos, oldnode, oldmetadata)
end,
paramtype2 = "facedir",
on_rotate = screwdriver.disallow,
use_texture_alpha = "clip",
sunlight_propagates = true,
is_ground_content = false,
groups = {crumbly = 2, cracky = 2, snappy = 2},
sounds = default.node_sound_defaults(),
})
-- The off-valve is a "secondary node" without connection sides
minetest.register_node("networks:valve_off", {
description = "Valve",
paramtype = "light",
drawtype = "nodebox",
node_box = node_box,
tiles = {
"networks_switch_off.png^[transformR90^[colorize:#007577:60",
"networks_switch_off.png^[transformR90^[colorize:#007577:60",
"networks_switch_off.png^[colorize:#007577:60",
"networks_switch_off.png^[colorize:#007577:60",
"networks_switch_hole.png^[colorize:#007577:60",
"networks_switch_hole.png^[colorize:#007577:60",
},
on_rightclick = function(pos, node, clicker)
if liquid.turn_valve_on(pos, Pipe, "networks:valve_off", "networks:valve_on") then
minetest.sound_play("doors_glass_door_open", {
pos = pos,
gain = 1,
max_hear_distance = 5})
end
end,
after_dig_node = function(pos, oldnode, oldmetadata, digger)
Pipe:after_dig_node(pos)
end,
paramtype2 = "facedir",
on_rotate = screwdriver.disallow,
use_texture_alpha = "clip",
sunlight_propagates = true,
is_ground_content = false,
drop = "networks:valve_on",
groups = {crumbly = 2, cracky = 2, snappy = 2, test_trowel = 1, not_in_creative_inventory = 1},
sounds = default.node_sound_defaults(),
})
liquid.register_nodes({"networks:valve_off"}, Pipe, "tank", {}, {})
@@ -0,0 +1,585 @@
--[[
Networks
========
Copyright (C) 2021 Joachim Stolberg
AGPL v3
See LICENSE.txt for more information
]]--
-- for lazy programmers
local P2S = function(pos) if pos then return minetest.pos_to_string(pos) end end
local S2P = minetest.string_to_pos
local M = minetest.get_meta
local CYCLE_TIME = 2
local STORAGE_CAPA = 500
local GEN_MAX = 20
local CON_MAX = 5
local HIDDEN = true -- enable/disable hidden nodes
local function round(val)
if val > 100 then
return math.floor(val + 0.5)
elseif val > 10 then
return math.floor((val * 10) + 0.5) / 10
else
return math.floor((val * 100) + 0.5) / 100
end
end
local power = networks.power
-------------------------------------------------------------------------------
-- Cable
-------------------------------------------------------------------------------
local Cable = tubelib2.Tube:new({
dirs_to_check = {1,2,3,4,5,6},
max_tube_length = 100,
tube_type = "pwr",
primary_node_names = {"networks:cableS", "networks:cableA", "networks:switch_on"},
secondary_node_names = {}, -- Names will be added via 'power.register_nodes'
after_place_tube = function(pos, param2, tube_type, num_tubes, tbl)
local name = minetest.get_node(pos).name
if name == "networks:switch_on" or name == "networks:switch_off" then
minetest.swap_node(pos, {name = name, param2 = param2 % 32})
elseif not networks.hidden_name(pos) then
minetest.swap_node(pos, {name = "networks:cable"..tube_type, param2 = param2 % 32})
end
M(pos):set_int("netw_param2", param2)
end,
})
if HIDDEN then
-- Enable hidden cables
networks.use_metadata(Cable)
networks.register_hidden_message("Use the tool to remove the node.")
networks.register_filling_items({
"default:stone",
"default:stonebrick",
"default:stone_block",
"default:clay",
"default:snowblock",
"default:ice",
"default:glass",
"default:obsidian_glass",
"default:brick",
"default:tree",
"default:wood",
"default:jungletree",
"default:junglewood",
"default:pine_tree",
"default:pine_wood",
"default:acacia_tree",
"default:acacia_wood",
"default:aspen_tree",
"default:aspen_wood",
"default:steelblock",
"default:copperblock",
"default:tinblock",
"default:bronzeblock",
"default:goldblock",
"default:mese",
"default:diamondblock",
})
end
-- Use global callback instead of node related functions
Cable:register_on_tube_update2(function(pos, outdir, tlib2, node)
power.update_network(pos, outdir, tlib2, node)
end)
minetest.register_node("networks:cableS", {
description = "Cable",
tiles = { -- Top, base, right, left, front, back
"networks_cable.png",
"networks_cable.png",
"networks_cable.png",
"networks_cable.png",
"networks_hole.png",
"networks_hole.png",
},
after_place_node = function(pos, placer, itemstack, pointed_thing)
if not Cable:after_place_tube(pos, placer, pointed_thing) then
minetest.remove_node(pos)
return true
end
return false
end,
after_dig_node = function(pos, oldnode, oldmetadata, digger)
Cable:after_dig_tube(pos, oldnode, oldmetadata)
end,
paramtype2 = "facedir",
drawtype = "nodebox",
node_box = {
type = "fixed",
fixed = {
{-3/16, -3/16, -4/8, 3/16, 3/16, 4/8},
},
},
on_rotate = screwdriver.disallow,
paramtype = "light",
use_texture_alpha = "clip",
sunlight_propagates = true,
is_ground_content = false,
groups = {crumbly = 2, cracky = 2, snappy = 2, test_trowel = 1},
sounds = default.node_sound_defaults(),
})
minetest.register_node("networks:cableA", {
description = "Cable",
tiles = { -- Top, base, right, left, front, back
"networks_cable.png",
"networks_hole.png",
"networks_cable.png",
"networks_cable.png",
"networks_cable.png",
"networks_hole.png",
},
after_dig_node = function(pos, oldnode, oldmetadata, digger)
Cable:after_dig_tube(pos, oldnode, oldmetadata)
end,
paramtype2 = "facedir",
drawtype = "nodebox",
node_box = {
type = "fixed",
fixed = {
{-3/16, -4/8, -3/16, 3/16, 3/16, 3/16},
{-3/16, -3/16, -4/8, 3/16, 3/16, -3/16},
},
},
on_rotate = screwdriver.disallow,
paramtype = "light",
use_texture_alpha = "clip",
sunlight_propagates = true,
is_ground_content = false,
groups = {crumbly = 2, cracky = 2, snappy = 2, test_trowel = 1, not_in_creative_inventory=1},
sounds = default.node_sound_defaults(),
drop = "networks:cableS",
})
local size = 3/16
local Boxes = {
{{-size, -size, size, size, size, 0.5 }}, -- z+
{{-size, -size, -size, 0.5, size, size}}, -- x+
{{-size, -size, -0.5, size, size, size}}, -- z-
{{-0.5, -size, -size, size, size, size}}, -- x-
{{-size, -0.5, -size, size, size, size}}, -- y-
{{-size, -size, -size, size, 0.5, size}}, -- y+
}
local names = networks.register_junction("networks:junction", size, Boxes, Cable, {
description = "Junction",
tiles = {"networks_junction.png"},
after_place_node = function(pos, placer, itemstack, pointed_thing)
local name = "networks:junction"..networks.junction_type(pos, Cable)
minetest.swap_node(pos, {name = name, param2 = 0})
Cable:after_place_node(pos)
end,
-- junction needs own 'tubelib2_on_update2' to be able to call networks.junction_type
tubelib2_on_update2 = function(pos, outdir, tlib2, node)
if not networks.hidden_name(pos) then
local name = "networks:junction" .. networks.junction_type(pos, Cable)
minetest.swap_node(pos, {name = name, param2 = 0})
end
power.update_network(pos, 0, tlib2, node)
end,
after_dig_node = function(pos, oldnode, oldmetadata, digger)
Cable:after_dig_node(pos)
end,
use_texture_alpha = "clip",
is_ground_content = false,
groups = {crumbly = 2, cracky = 2, snappy = 2, test_trowel = 1},
sounds = default.node_sound_defaults(),
}, 63)
power.register_nodes(names, Cable, "junc")
-------------------------------------------------------------------------------
-- Generator
-------------------------------------------------------------------------------
minetest.register_node("networks:generator", {
description = "Generator",
tiles = {
-- up, down, right, left, back, front
'networks_gen.png',
'networks_gen.png',
'networks_gen.png',
'networks_gen.png',
'networks_gen.png',
'networks_conn.png',
},
after_place_node = function(pos)
local outdir = networks.side_to_outdir(pos, "F")
M(pos):set_int("outdir", outdir)
Cable:after_place_node(pos, {outdir})
M(pos):set_string("infotext", "off")
tubelib2.init_mem(pos)
end,
after_dig_node = function(pos, oldnode, oldmetadata)
local outdir = tonumber(oldmetadata.fields.outdir or 0)
Cable:after_dig_node(pos, {outdir})
tubelib2.del_mem(pos)
end,
on_timer = function(pos, elapsed)
local outdir = M(pos):get_int("outdir")
local mem = tubelib2.get_mem(pos)
mem.provided = power.provide_power(pos, Cable, outdir, GEN_MAX)
mem.load = power.get_storage_load(pos, Cable, outdir, GEN_MAX)
M(pos):set_string("infotext", "providing "..round(mem.provided))
return true
end,
on_rightclick = function(pos, node, clicker)
local mem = tubelib2.get_mem(pos)
if mem.running then
mem.running = false
M(pos):set_string("infotext", "off")
minetest.get_node_timer(pos):stop()
else
mem.provided = mem.provided or 0
mem.running = true
M(pos):set_string("infotext", "providing "..round(mem.provided))
minetest.get_node_timer(pos):start(CYCLE_TIME)
end
local outdir = M(pos):get_int("outdir")
power.start_storage_calc(pos, Cable, outdir)
end,
get_generator_data = function(pos, outdir, tlib2)
local mem = tubelib2.get_mem(pos)
if mem.running then
-- generator storage capa = 2 * performance
return {level = (mem.load or 0) / GEN_MAX, perf = GEN_MAX, capa = GEN_MAX * 2}
end
end,
paramtype2 = "facedir",
on_rotate = screwdriver.disallow,
is_ground_content = false,
groups = {crumbly = 2, cracky = 2, snappy = 2},
sounds = default.node_sound_defaults(),
})
-- Generators have to provide one output side
power.register_nodes({"networks:generator"}, Cable, "gen", {"F"})
-------------------------------------------------------------------------------
-- Storage
-------------------------------------------------------------------------------
minetest.register_node("networks:storage", {
description = "Storage",
tiles = {
-- up, down, right, left, back, front
"networks_sto.png",
"networks_sto.png",
"networks_sto.png",
"networks_sto.png",
"networks_sto.png",
'networks_conn.png',
},
after_place_node = function(pos)
local outdir = networks.side_to_outdir(pos, "F")
M(pos):set_int("outdir", outdir)
Cable:after_place_node(pos, {outdir})
tubelib2.init_mem(pos)
M(pos):set_string("infotext", "off")
end,
after_dig_node = function(pos, oldnode, oldmetadata)
local outdir = tonumber(oldmetadata.fields.outdir or 0)
Cable:after_dig_node(pos, {outdir})
tubelib2.del_mem(pos)
end,
on_timer = function(pos, elapsed)
local mem = tubelib2.get_mem(pos)
local outdir = M(pos):get_int("outdir")
local data = power.get_storage_data(pos, Cable, outdir)
if data then
mem.load = data.level * STORAGE_CAPA
local percent = data.level * 100
M(pos):set_string("infotext", "level = "..round(percent)..", charging = "..data.charging)
end
return true
end,
on_rightclick = function(pos, node, clicker)
local mem = tubelib2.get_mem(pos)
if mem.running then
mem.running = false
M(pos):set_string("infotext", "off")
minetest.get_node_timer(pos):stop()
else
mem.provided = mem.provided or 0
mem.running = true
local percent = (mem.load or 0) / STORAGE_CAPA * 100
M(pos):set_string("infotext", "level = "..round(percent))
minetest.get_node_timer(pos):start(CYCLE_TIME)
end
local outdir = M(pos):get_int("outdir")
power.start_storage_calc(pos, Cable, outdir)
end,
get_storage_data = function(pos, outdir, tlib2)
local mem = tubelib2.get_mem(pos)
if mem.running then
return {level = (mem.load or 0) / STORAGE_CAPA, capa = STORAGE_CAPA}
end
end,
paramtype2 = "facedir",
on_rotate = screwdriver.disallow,
is_ground_content = false,
groups = {crumbly = 2, cracky = 2, snappy = 2},
sounds = default.node_sound_defaults(),
})
-- Storage nodes have to provide one input/output side
power.register_nodes({"networks:storage"}, Cable, "sto", {"F"})
-------------------------------------------------------------------------------
-- Consumer
-------------------------------------------------------------------------------
local function swap_node(pos, name)
local node = tubelib2.get_node_lvm(pos)
if node.name == name then
return
end
node.name = name
minetest.swap_node(pos, node)
end
local function turn_on(pos)
swap_node(pos, "networks:consumer_on")
M(pos):set_string("infotext", "on")
local mem = tubelib2.get_mem(pos)
mem.running = true
minetest.get_node_timer(pos):start(CYCLE_TIME)
end
local function turn_off(pos)
swap_node(pos, "networks:consumer")
M(pos):set_string("infotext", "off")
local mem = tubelib2.get_mem(pos)
mem.running = false
minetest.get_node_timer(pos):stop()
end
local function on_rightclick(pos, node, clicker)
local mem = tubelib2.get_mem(pos)
if not mem.running and power.power_available(pos, Cable) then
turn_on(pos)
else
turn_off(pos)
end
end
local function after_place_node(pos)
M(pos):set_string("infotext", "off")
Cable:after_place_node(pos)
tubelib2.init_mem(pos)
end
local function after_dig_node(pos, oldnode)
Cable:after_dig_node(pos)
tubelib2.del_mem(pos)
end
minetest.register_node("networks:consumer", {
description = "Consumer",
tiles = {'networks_con.png^[colorize:#000000:50'},
on_timer = function(pos, elapsed)
local consumed = power.consume_power(pos, Cable, nil, CON_MAX)
if consumed == CON_MAX then
swap_node(pos, "networks:consumer_on")
M(pos):set_string("infotext", "on")
end
return true
end,
on_rightclick = on_rightclick,
after_place_node = after_place_node,
after_dig_node = after_dig_node,
paramtype2 = "facedir",
groups = {choppy = 2, cracky = 2, crumbly = 2},
is_ground_content = false,
sounds = default.node_sound_defaults(),
})
minetest.register_node("networks:consumer_on", {
description = "Consumer",
tiles = {'networks_con.png'},
on_timer = function(pos, elapsed)
local consumed = power.consume_power(pos, Cable, nil, CON_MAX)
if consumed < CON_MAX then
swap_node(pos, "networks:consumer")
M(pos):set_string("infotext", "no power")
end
return true
end,
on_rightclick = on_rightclick,
after_place_node = after_place_node,
after_dig_node = after_dig_node,
paramtype = "light",
light_source = minetest.LIGHT_MAX,
paramtype2 = "facedir",
diggable = false,
drop = "",
groups = {not_in_creative_inventory = 1},
is_ground_content = false,
sounds = default.node_sound_defaults(),
})
-- Consumer can provide dedicated input sides, otherwise all sides are used
power.register_nodes({"networks:consumer", "networks:consumer_on"}, Cable, "con")
-------------------------------------------------------------------------------
-- Switch/valve
-------------------------------------------------------------------------------
local node_box = {
type = "fixed",
fixed = {
{-5/16, -5/16, -4/8, 5/16, 5/16, 4/8},
},
}
-- The on-switch is a "primary node" like cables
minetest.register_node("networks:switch_on", {
description = "Switch",
paramtype = "light",
drawtype = "nodebox",
node_box = node_box,
tiles = {
"networks_switch_on.png^[transformR90",
"networks_switch_on.png^[transformR90",
"networks_switch_on.png",
"networks_switch_on.png",
"networks_switch_hole.png",
"networks_switch_hole.png",
},
after_place_node = function(pos, placer, itemstack, pointed_thing)
if not Cable:after_place_tube(pos, placer, pointed_thing) then
minetest.remove_node(pos)
return true
end
return false
end,
on_rightclick = function(pos, node, clicker)
if power.turn_switch_off(pos, Cable, "networks:switch_off", "networks:switch_on") then
minetest.sound_play("doors_glass_door_open", {
pos = pos,
gain = 1,
max_hear_distance = 5})
end
end,
after_dig_node = function(pos, oldnode, oldmetadata, digger)
Cable:after_dig_tube(pos, oldnode, oldmetadata)
end,
paramtype2 = "facedir",
on_rotate = screwdriver.disallow,
use_texture_alpha = "clip",
sunlight_propagates = true,
is_ground_content = false,
groups = {crumbly = 2, cracky = 2, snappy = 2, test_trowel = 1},
sounds = default.node_sound_defaults(),
})
-- The off-switch is a "secondary node" without connection sides
minetest.register_node("networks:switch_off", {
description = "Switch",
paramtype = "light",
drawtype = "nodebox",
node_box = node_box,
tiles = {
"networks_switch_off.png^[transformR90",
"networks_switch_off.png^[transformR90",
"networks_switch_off.png",
"networks_switch_off.png",
"networks_switch_hole.png",
"networks_switch_hole.png",
},
on_rightclick = function(pos, node, clicker)
if power.turn_switch_on(pos, Cable, "networks:switch_off", "networks:switch_on") then
minetest.sound_play("doors_glass_door_open", {
pos = pos,
gain = 1,
max_hear_distance = 5})
end
end,
after_dig_node = function(pos, oldnode, oldmetadata, digger)
Cable:after_dig_node(pos)
end,
paramtype2 = "facedir",
on_rotate = screwdriver.disallow,
use_texture_alpha = "clip",
sunlight_propagates = true,
is_ground_content = false,
drop = "networks:switch_on",
groups = {crumbly = 2, cracky = 2, snappy = 2, test_trowel = 1, not_in_creative_inventory = 1},
sounds = default.node_sound_defaults(),
})
power.register_nodes({"networks:switch_off"}, Cable, "con", {})
-------------------------------------------------------------------------------
-- Hide/open tool
-------------------------------------------------------------------------------
-- Hide or open a node
local function replace_node(itemstack, placer, pointed_thing)
if pointed_thing.type == "node" then
local pos = pointed_thing.under
local name = placer:get_player_name()
if minetest.is_protected(pos, name) then
return
end
local node = minetest.get_node(pos)
local res = false
if minetest.get_item_group(node.name, "test_trowel") == 1 then
res = networks.hide_node(pos, node, placer)
elseif networks.hidden_name(pos) then
res = networks.open_node(pos, node, placer)
end
if res then
minetest.sound_play("default_dig_snappy", {
pos = pos,
gain = 1,
max_hear_distance = 5})
elseif placer and placer.get_player_name then
minetest.chat_send_player(placer:get_player_name(), "Invalid fill material in inventory slot 1!")
end
end
end
minetest.register_tool("networks:tool", {
description = "Hide Tool\n(Fill material to the right of the tool)",
inventory_image = "networks_tool.png",
wield_image = "networks_tool.png",
use_texture_alpha = "clip",
groups = {cracky=1},
on_use = replace_node,
on_place = replace_node,
node_placement_prediction = "",
stack_max = 1,
})
-------------------------------------------------------------------------------
-- Test Commands
-------------------------------------------------------------------------------
minetest.register_chatcommand("power_data", {
func = function(name)
local player = minetest.get_player_by_name(name)
local pos = player:get_pos()
pos.y = pos.y - 0.5
pos = vector.round(pos)
local data = power.get_network_data(pos, Cable)
if data then
local s = string.format("Netw %u: generated = %u/%u, consumed = %u, storage load = %u/%u",
data.netw_num, round(data.provided),
data.available, round(data.consumed),
round(data.curr_load), round(data.max_capa))
return true, s
end
return false, "No valid node position!"
end
})
return Cable
@@ -0,0 +1,212 @@
--[[
Networks
========
Copyright (C) 2021 Joachim Stolberg
AGPL v3
See LICENSE.txt for more information
]]--
-- for lazy programmers
local P2S = function(pos) if pos then return minetest.pos_to_string(pos) end end
local S2P = minetest.string_to_pos
local M = minetest.get_meta
local power = networks.power
local liquid = networks.liquid
local function round(val)
return math.floor(val + 0.5)
end
local function get_list(tbl, sep)
local keys = {}
for k,v in pairs(tbl) do
if v then
keys[#keys + 1] = k
end
end
return table.concat(keys, sep)
end
local NetwTypes = false
local function collect_netw_types()
NetwTypes = {}
for k,v in pairs(networks.registered_networks.power) do
NetwTypes[k] = "power"
end
for k,v in pairs(networks.registered_networks.liquid) do
NetwTypes[k] = "liquid"
end
end
local function print_sides(pos, api, netw_type)
local t = {}
for _, dir in ipairs(networks.get_node_connection_dirs(pos, netw_type)) do
t[#t + 1]= tubelib2.dir_to_string(dir)
end
print("# " .. api .. " - " .. netw_type .. " dirs: " .. table.concat(t, ", "))
end
local function print_power_network_data(pos, api, netw_type, outdir)
local tlib2 = networks.registered_networks[api][netw_type]
local data = power.get_network_data(pos, tlib2, outdir)
local netw = networks.get_network_table(pos, tlib2, outdir)
if netw then
print(" - Number of network nodes: " .. (netw.num_nodes or 0))
print(" - Number of generators: " .. #(netw.gen or {}))
print(" - Number of consumers: " .. #(netw.con or {}))
print(" - Number of storage systems: " .. #(netw.sto or {}))
end
if data then
local s = string.format(" - Netw %u: generated = %u/%u, consumed = %u, storage load = %u/%u",
data.netw_num, round(data.provided),
data.available, round(data.consumed),
round(data.curr_load), round(data.max_capa))
print(s)
end
end
local function print_liquid_network_data(pos, api, netw_type, outdir)
local tlib2 = networks.registered_networks[api][netw_type]
local netw = networks.get_network_table(pos, tlib2, outdir)
if netw then
print(" - Number of network nodes: " .. (netw.num_nodes or 0))
print(" - Number of pumps: " .. #(netw.pump or {}))
print(" - Number of tanks: " .. #(netw.tank or {}))
end
end
local function is_junction(pos, tlib2)
local ndef = networks.net_def(pos, tlib2.tube_type)
return ndef.ntype == "junc"
end
local function print_netID(pos, api, netw_type)
local tlib2 = networks.registered_networks[api][netw_type]
for _,outdir in ipairs(networks.get_outdirs(pos, tlib2)) do
local netID = networks.get_netID(pos, outdir)
local s = tubelib2.dir_to_string(outdir)
if netID then
print("- " .. s .. ": netwNum for '" .. netw_type .. "': " .. networks.netw_num(netID))
if api == "liquid" then
print_liquid_network_data(pos, api, netw_type, outdir)
elseif api == "power" then
print_power_network_data(pos, api, netw_type, outdir)
end
elseif is_junction(pos, tlib2) then
netID = networks.get_netID(pos, 0)
if netID then
print("- " .. s .. ": Junction netwNum: " .. networks.netw_num(netID))
break
end
else
print("- " .. s .. ": Node has no '" .. netw_type .. "' netID!!!")
end
end
end
local function print_secondary_node(pos, api, netw_type)
local tlib2 = networks.registered_networks[api][netw_type]
if tlib2:is_secondary_node(pos) then
print("- Secondary node: true")
else
print("- Is no secondary node!!!")
end
end
local function print_valid_sides(name, api, netw_type)
local tlib2 = networks.registered_networks[api][netw_type]
local sides = tlib2.valid_node_contact_sides[name]
if sides then
print("- Valid node contact sides: " .. get_list(sides, ", "))
else
print("- Has no valid node contact sides!!!")
end
end
local function print_connected_nodes(pos, api, netw_type)
local tlib2 = networks.registered_networks[api][netw_type]
for outdir = 1,6 do
local destpos, indir = tlib2:get_connected_node_pos(pos, outdir)
if destpos and tlib2:connected(destpos) then
local s1 = tubelib2.dir_to_string(outdir)
local s2 = tubelib2.dir_to_string(indir)
local node = minetest.get_node(destpos)
print("- " .. s1 .. ": Node connected to " .. node.name .. " at " .. P2S(destpos) .. " from " .. s2)
end
end
end
-- debug print of node related data
local function debug_print(pos)
local node = minetest.get_node(pos)
local ndef = minetest.registered_nodes[node.name]
if not NetwTypes then
collect_netw_types()
end
if not ndef.networks then
print("No networks node!!!")
return
end
print("########## " .. node.name .. " ###########")
for netw_type,api in pairs(NetwTypes) do
if ndef.networks[netw_type] then
print_sides(pos, api, netw_type)
print_netID(pos, api, netw_type)
print_secondary_node(pos, api, netw_type)
print_valid_sides(node.name, api, netw_type)
print_connected_nodes(pos, api, netw_type)
end
end
print("#####################")
end
local function on_use(itemstack, placer, pointed_thing)
if pointed_thing.type == "node" then
local pos = pointed_thing.under
networks.register_observe_pos(pos)
if placer:get_player_control().sneak then
debug_print(pos)
else
debug_print(pos)
end
else
networks.register_observe_pos(nil)
end
end
local function on_place(itemstack, placer, pointed_thing)
if pointed_thing.type == "node" then
local pos = pointed_thing.under
networks.register_observe_pos(nil)
if placer:get_player_control().sneak then
debug_print(pos)
else
debug_print(pos)
end
else
networks.register_observe_pos(nil)
end
end
minetest.register_tool("networks:tool2", {
description = "Debugging Tool",
inventory_image = "networks_tool.png",
wield_image = "networks_tool.png",
use_texture_alpha = "clip",
groups = {cracky=1},
on_use = on_use,
on_place = on_place,
node_placement_prediction = "",
stack_max = 1,
})
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