mirror of
https://github.com/appgurueu/modlib.git
synced 2024-11-19 22:03:45 +01:00
501 lines
13 KiB
Lua
501 lines
13 KiB
Lua
-- ensure modlib API isn't leaking into global environment
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assert(modlib.bluon.assert ~= assert)
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local random, huge = math.random, math.huge
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local parent_env = getfenv(1)
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setfenv(1, setmetatable({}, {
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__index = function(_, key)
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local value = modlib[key]
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if value ~= nil then
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return value
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end
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return parent_env[key]
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end,
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__newindex = function(_, key, value)
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error(dump{key = key, value = value})
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end
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}))
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-- math
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do
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local function assert_tonumber(num, base)
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local str = modlib.math.tostring(num, base)
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assert(tonumber(str, base) == num, str)
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end
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assert_tonumber(134217503, 36)
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assert_tonumber(3.14, 10)
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end
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-- func
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do
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local tab = {a = 1, b = 2}
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local function check_entry(key, value)
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assert(tab[key] == value)
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tab[key] = nil
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end
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func.iterate(check_entry, pairs(tab))
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assert(next(tab) == nil)
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tab = {a = 1, b = 2}
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local function pairs_callback(callback, tab)
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for k, v in pairs(tab) do
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callback(k, v)
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end
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end
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for k, v in func.for_generator(pairs_callback, tab) do
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check_entry(k, v)
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end
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assert(next(tab) == nil)
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assert(func.aggregate(func.add, 1, 2, 3) == 6)
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end
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-- string
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assert(string.escape_magic_chars"%" == "%%")
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-- table
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do
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local tab = {}
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tab[tab] = tab
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local table_copy = table.deepcopy(tab)
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assert(table_copy[table_copy] == table_copy)
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assert(table.is_circular(tab))
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assert(not table.is_circular{a = 1})
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assert(table.equals_noncircular({[{}]={}}, {[{}]={}}))
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assert(table.equals_content(tab, table_copy))
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local equals_references = table.equals_references
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assert(equals_references(tab, table_copy))
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assert(equals_references({}, {}))
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assert(not equals_references({a = 1, b = 2}, {a = 1, b = 3}))
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tab = {}
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tab.a, tab.b = tab, tab
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table_copy = table.deepcopy(tab)
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assert(equals_references(tab, table_copy))
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local x, y = {}, {}
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assert(not equals_references({[x] = x, [y] = y}, {[x] = y, [y] = x}))
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assert(equals_references({[x] = x, [y] = y}, {[x] = x, [y] = y}))
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local nilget = table.nilget
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assert(nilget({a = {b = {c = 42}}}, "a", "b", "c") == 42)
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assert(nilget({a = {}}, "a", "b", "c") == nil)
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assert(nilget(nil, "a", "b", "c") == nil)
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assert(nilget(nil, "a", nil, "c") == nil)
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local rope = table.rope{}
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rope:write"hello"
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rope:write" "
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rope:write"world"
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assert(rope:to_text() == "hello world", rope:to_text())
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tab = {a = 1, b = {2}}
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tab[3] = tab
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local contents = {
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a = 1,
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[1] = 1,
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b = 1,
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[tab.b] = 1,
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[2] = 1,
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[tab] = 1,
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[3] = 1
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}
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table.deep_foreach_any(tab, function(content)
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assert(contents[content], content)
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contents[content] = 2
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end)
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for _, value in pairs(contents) do
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assert(value == 2)
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end
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-- Test table.binary_search against a linear search
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local function linear_search(list, value)
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for i, val in ipairs(list) do
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if val == value then
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return i
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end
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if val > value then
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return -i
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end
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end
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return -#list-1
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end
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for k = 0, 100 do
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local sorted = {}
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for i = 1, k do
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sorted[i] = _G.math.random(1, 1000)
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end
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_G.table.sort(sorted)
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for i = 1, 10 do
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local pick = _G.math.random(-100, 1100)
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local linear, binary = linear_search(sorted, pick), table.binary_search(sorted, pick)
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-- If numbers appear twice (or more often), the indices may differ, as long as the number is the same.
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assert(linear == binary or (linear > 0 and sorted[linear] == sorted[binary]))
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end
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end
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end
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-- heap
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do
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local n = 100
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local list = {}
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for index = 1, n do
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list[index] = index
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end
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table.shuffle(list)
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local heap = heap.new()
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for index = 1, #list do
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heap:push(list[index])
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end
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for index = 1, #list do
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local popped = heap:pop()
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assert(popped == index)
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end
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end
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-- hashlist
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do
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local n = 100
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local list = hashlist.new{}
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for i = 1, n do
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list:push_tail(i)
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end
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for i = 1, n do
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local head = list:get_head()
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assert(head == list:pop_head(i) and head == i)
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end
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end
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-- ranked set
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do
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local n = 100
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local ranked_set = ranked_set.new()
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local list = {}
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for i = 1, n do
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ranked_set:insert(i)
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list[i] = i
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end
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assert(table.equals(ranked_set:to_table(), list))
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local i = 0
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for rank, key in ranked_set:ipairs() do
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i = i + 1
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assert(i == key and i == rank)
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assert(ranked_set:get_by_rank(rank) == key)
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local rank, key = ranked_set:get(i)
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assert(key == i and i == rank)
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end
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assert(i == n)
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for i = 1, n do
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local _, v = ranked_set:delete(i)
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assert(v == i, i)
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end
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assert(not next(ranked_set:to_table()))
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local ranked_set = ranked_set.new()
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for i = 1, n do
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ranked_set:insert(i)
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end
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for rank, key in ranked_set:ipairs(10, 20) do
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assert(rank == key and key >= 10 and key <= 20)
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end
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for i = n, 1, -1 do
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local j = ranked_set:delete_by_rank(i)
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assert(j == i)
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end
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end
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-- k-d-tree
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local vectors = {}
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for _ = 1, 1000 do
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_G.table.insert(vectors, {random(), random(), random()})
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end
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local kdtree = kdtree.new(vectors)
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for _, v in ipairs(vectors) do
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local neighbor, distance = kdtree:get_nearest_neighbor(v)
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assert(vector.equals(v, neighbor), distance == 0)
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end
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for _ = 1, 1000 do
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local v = {random(), random(), random()}
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local _, distance = kdtree:get_nearest_neighbor(v)
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local min_distance = huge
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for _, w in ipairs(vectors) do
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local other_distance = vector.distance(v, w)
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if other_distance < min_distance then
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min_distance = other_distance
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end
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end
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assert(distance == min_distance)
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end
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local function serializer_test(is_json, preserve)
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local function assert_preserves(obj)
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local preserved = preserve(obj)
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if obj ~= obj then
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assert(preserved ~= preserved)
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else
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assert(table.equals_references(preserved, obj))
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end
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end
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-- TODO proper deep table comparison with nan support
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for _, constant in pairs(is_json and {true, false} or {true, false, huge, -huge, 0/0}) do
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assert_preserves(constant)
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end
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-- Strings
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for i = 1, 1000 do
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assert_preserves(_G.table.concat(table.repetition(_G.string.char(i % 256), i)))
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end
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-- Numbers
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for _ = 1, 1000 do
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local int = random(-2^50, 2^50)
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assert(int % 1 == 0)
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assert_preserves(int)
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assert_preserves((random() - 0.5) * 2^random(-20, 20))
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end
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-- Simple tables
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assert_preserves{hello = "world", welt = "hallo"}
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assert_preserves{a = 1, b = "hallo", c = "true"}
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assert_preserves{"hello", "hello", "hello"}
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assert_preserves{1, 2, 3, true, false}
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if is_json then return end
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local circular = {}
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circular[circular] = circular
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circular[1] = circular
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assert_preserves(circular)
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local mixed = {1, 2, 3}
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mixed[mixed] = mixed
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mixed.vec = {x = 1, y = 2, z = 3}
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mixed.vec2 = modlib.table.copy(mixed.vec)
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mixed.blah = "blah"
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assert_preserves(mixed)
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local a, b, c = {}, {}, {}
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a[a] = a; a[b] = b; a[c] = c;
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b[a] = a; b[b] = b; b[c] = c;
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c[a] = a; c[b] = b; c[c] = c;
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a.a = {"a", a = a}
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assert_preserves(a)
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end
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-- JSON
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do
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serializer_test(true, function(object)
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return json:read_string(json:write_string(object))
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end)
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-- Verify spacing is accepted
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assert(table.equals_noncircular(json:read_string'\t\t\n{ "a" : 1, \t"b":2, "c" : [ 1, 2 ,3 ] } \n\r\t', {a = 1, b = 2, c = {1, 2, 3}}))
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-- Simple surrogate pair tests
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for _, prefix in pairs{"x", ""} do
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for _, suffix in pairs{"x", ""} do
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local function test(str, expected_str)
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if type(expected_str) == "number" then
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expected_str = text.utf8(expected_str)
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end
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return assert(json:read_string('"' .. prefix .. str .. suffix .. '"') == prefix .. expected_str .. suffix)
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end
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test([[\uD834\uDD1E]], 0x1D11E)
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test([[\uDD1E\uD834]], text.utf8(0xDD1E) .. text.utf8(0xD834))
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test([[\uD834]], 0xD834)
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test([[\uDD1E]], 0xDD1E)
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end
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end
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end
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-- luon
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do
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serializer_test(false, function(object)
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return luon:read_string(luon:write_string(object))
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end)
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end
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-- bluon
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do
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-- TODO 1.1496387980481e-07 fails due to precision issues
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serializer_test(false, function(object)
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local rope = table.rope{}
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local written, read, input
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bluon:write(object, rope)
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written = rope:to_text()
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input = text.inputstream(written)
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read = bluon:read(input)
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local remaining = input:read(1)
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assert(not remaining)
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return read
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end)
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end
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if not _G.minetest then return end
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assert(minetest.luon:read_string(minetest.luon:write_string(ItemStack"")))
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-- colorspec
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local colorspec = minetest.colorspec
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local function test_from_string(string, number)
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local spec = colorspec.from_string(string)
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local expected = colorspec.from_number(number)
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assertdump(table.equals(spec, expected), {expected = expected, actual = spec})
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end
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local spec = colorspec.from_number(0xDDCCBBAA)
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assertdump(table.equals(spec, {a = 0xAA, b = 0xBB, g = 0xCC, r = 0xDD}), spec)
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test_from_string("aliceblue", 0xf0f8ffff)
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test_from_string("aliceblue#42", 0xf0f8ff42)
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test_from_string("#333", 0x333333FF)
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test_from_string("#694269", 0x694269FF)
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test_from_string("#11223344", 0x11223344)
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assert(colorspec.from_string"#694269":to_string() == "694269")
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-- Persistence
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local function test_logfile(reference_strings)
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local path = mod.get_resource"logfile.test.lua"
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os.remove(path)
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local logfile = persistence.lua_log_file.new(path, {root_preserved = true}, reference_strings)
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logfile:init()
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assert(logfile.root.root_preserved)
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logfile.root = {a_longer_string = "test"}
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logfile:rewrite()
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logfile:set_root({a = 1}, {b = 2, c = 3, d = _G.math.huge, e = -_G.math.huge})
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local circular = {}
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circular[circular] = circular
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logfile:set_root(circular, circular)
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logfile:close()
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logfile:init()
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assert(table.equals_references(logfile.root, {
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a_longer_string = "test",
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[{a = 1}] = {b = 2, c = 3, d = _G.math.huge, e = -_G.math.huge},
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[circular] = circular,
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}))
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if not reference_strings then
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for key in pairs(logfile.references) do
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assert(type(key) ~= "string")
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end
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end
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end
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test_logfile(true)
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test_logfile(false)
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-- SQLite3
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do
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local sqlite3 = persistence.sqlite3()
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local p = sqlite3.new("database.test.sqlite3", {})
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p:init()
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p:rewrite()
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p:set_root("key", "value")
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assert(p.root.key == "value")
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p:set_root("other key", "other value")
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p:set_root("key", "other value")
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p:set_root("key", nil)
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local x = {x = 1, y = 2}
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p:set_root("x1", x)
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p:set_root("x2", x)
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p:set_root("x2", nil)
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p:set_root("x1", nil)
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p:set_root("key", {a = 1, b = 2, c = {a = 1}})
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p:set_root("key", nil)
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p:set_root("key", {a = 1, b = 2, c = 3})
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local cyclic = {}
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cyclic.cycle = cyclic
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p:set_root("cyclic", cyclic)
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p:set_root("cyclic", nil)
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p:collectgarbage()
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p:defragment_ids()
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local rows = {}
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for row in p.database:rows"SELECT * FROM table_entries ORDER BY table_id, key_type, key" do
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_G.table.insert(rows, row)
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end
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assert(modlib.table.equals(rows, {
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{1, 3, "key", 4, 2},
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{1, 3, "other key", 3, "other value"},
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{2, 3, "a", 2, 1},
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{2, 3, "b", 2, 2},
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{2, 3, "c", 2, 3}
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}))
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p:close()
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p = sqlite3.new("database.test.sqlite3", {})
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p:init()
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assert(modlib.table.equals(p.root, {
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key = {a = 1, b = 2, c = 3},
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["other key"] = "other value"
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}))
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p:close()
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end
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-- in-game tests & b3d testing
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local tests = {
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-- depends on player_api
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b3d = false,
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liquid_dir = false,
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liquid_raycast = false
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}
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if tests.b3d then
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local stream = io.open(mod.get_resource("player_api", "models", "character.b3d"), "r")
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assert(stream)
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local b3d = b3d.read(stream)
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--! dirty helper method to create truncate tables with 10+ number keys
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local function _b3d_truncate(table)
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local count = 1
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for key, value in pairs(table) do
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if type(key) == "table" then
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_b3d_truncate(key)
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end
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if type(value) == "table" then
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_b3d_truncate(value)
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end
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count = count + 1
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if type(key) == "number" and count >= 9 and next(table, key) then
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if count == 9 then
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table[key] = "TRUNCATED"
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else
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table[key] = nil
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end
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end
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end
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return table
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end
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file.write(mod.get_resource"character.b3d.lua", "return " .. dump(_b3d_truncate(table.copy(b3d))))
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stream:close()
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end
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local vector, minetest, ml_mt = _G.vector, _G.minetest, minetest
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if tests.liquid_dir then
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minetest.register_abm{
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label = "get_liquid_corner_levels & get_liquid_direction test",
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nodenames = {"group:liquid"},
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interval = 1,
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chance = 1,
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action = function(pos, node)
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assert(type(node) == "table")
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for _, corner_level in pairs(ml_mt.get_liquid_corner_levels(pos, node)) do
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minetest.add_particle{
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pos = vector.add(pos, corner_level),
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size = 2,
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texture = "logo.png"
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}
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end
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local direction = ml_mt.get_liquid_flow_direction(pos, node)
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local start_pos = pos
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start_pos.y = start_pos.y + 1
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for i = 0, 5 do
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minetest.add_particle{
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pos = vector.add(start_pos, vector.multiply(direction, i/5)),
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size = i/2.5,
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texture = "logo.png"
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}
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end
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end
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}
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end
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if tests.liquid_raycast then
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minetest.register_globalstep(function()
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for _, player in pairs(minetest.get_connected_players()) do
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local eye_pos = vector.offset(player:get_pos(), 0, player:get_properties().eye_height, 0)
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local raycast = ml_mt.raycast(eye_pos, vector.add(eye_pos, vector.multiply(player:get_look_dir(), 3)), false, true)
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for pointed_thing in raycast do
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if pointed_thing.type == "node" and minetest.registered_nodes[minetest.get_node(pointed_thing.under).name].liquidtype == "flowing" then
|
|
minetest.add_particle{
|
|
pos = vector.add(pointed_thing.intersection_point, vector.multiply(pointed_thing.intersection_normal, 0.1)),
|
|
size = 0.5,
|
|
texture = "object_marker_red.png",
|
|
expirationtime = 3
|
|
}
|
|
end
|
|
end
|
|
end
|
|
end)
|
|
end |