mirror of
https://github.com/minetest/minetest.git
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b38ffdec27
Co-authored-by: sfan5 <sfan5@live.de>
189 lines
4.6 KiB
Lua
189 lines
4.6 KiB
Lua
_G.core = {}
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_G.setfenv = require 'busted.compatibility'.setfenv
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dofile("builtin/common/serialize.lua")
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dofile("builtin/common/vector.lua")
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-- Supports circular tables; does not support table keys
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-- Correctly checks whether a mapping of references ("same") exists
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-- Is significantly more efficient than assert.same
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local function assert_same(a, b, same)
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same = same or {}
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if same[a] or same[b] then
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assert(same[a] == b and same[b] == a)
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return
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end
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if a == b then
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return
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end
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if type(a) ~= "table" or type(b) ~= "table" then
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assert(a == b)
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return
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end
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same[a] = b
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same[b] = a
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local count = 0
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for k, v in pairs(a) do
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count = count + 1
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assert(type(k) ~= "table")
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assert_same(v, b[k], same)
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end
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for _ in pairs(b) do
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count = count - 1
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end
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assert(count == 0)
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end
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local x, y = {}, {}
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local t1, t2 = {x, x, y, y}, {x, y, x, y}
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assert.same(t1, t2) -- will succeed because it only checks whether the depths match
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assert(not pcall(assert_same, t1, t2)) -- will correctly fail because it checks whether the refs match
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describe("serialize", function()
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local function assert_preserves(value)
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local preserved_value = core.deserialize(core.serialize(value))
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assert_same(value, preserved_value)
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end
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it("works", function()
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assert_preserves({cat={sound="nyan", speed=400}, dog={sound="woof"}})
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end)
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it("handles characters", function()
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assert_preserves({escape_chars="\n\r\t\v\\\"\'", non_european="θשׁ٩∂"})
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end)
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it("handles NaN & infinities", function()
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local nan = core.deserialize(core.serialize(0/0))
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assert(nan ~= nan)
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assert_preserves(math.huge)
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assert_preserves(-math.huge)
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end)
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it("handles precise numbers", function()
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assert_preserves(0.2695949158945771)
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end)
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it("handles big integers", function()
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assert_preserves(269594915894577)
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end)
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it("handles recursive structures", function()
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local test_in = { hello = "world" }
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test_in.foo = test_in
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assert_preserves(test_in)
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end)
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it("handles cross-referencing structures", function()
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local test_in = {
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foo = {
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baz = {
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{}
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},
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},
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bar = {
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baz = {},
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},
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}
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test_in.foo.baz[1].foo = test_in.foo
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test_in.foo.baz[1].bar = test_in.bar
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test_in.bar.baz[1] = test_in.foo.baz[1]
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assert_preserves(test_in)
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end)
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it("strips functions in safe mode", function()
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local test_in = {
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func = function(a, b)
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error("test")
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end,
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foo = "bar"
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}
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setfenv(test_in.func, _G)
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local str = core.serialize(test_in)
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assert.not_nil(str:find("loadstring"))
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local test_out = core.deserialize(str, true)
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assert.is_nil(test_out.func)
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assert.equals(test_out.foo, "bar")
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end)
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it("vectors work", function()
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local v = vector.new(1, 2, 3)
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assert_preserves({v})
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assert_preserves(v)
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-- abuse
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v = vector.new(1, 2, 3)
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v.a = "bla"
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assert_preserves(v)
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end)
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it("handles keywords as keys", function()
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assert_preserves({["and"] = "keyword", ["for"] = "keyword"})
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end)
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describe("fuzzing", function()
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local atomics = {true, false, math.huge, -math.huge} -- no NaN or nil
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local function atomic()
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return atomics[math.random(1, #atomics)]
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end
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local function num()
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local sign = math.random() < 0.5 and -1 or 1
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-- HACK math.random(a, b) requires a, b & b - a to fit within a 32-bit int
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-- Use two random calls to generate a random number from 0 - 2^50 as lower & upper 25 bits
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local val = math.random(0, 2^25) * 2^25 + math.random(0, 2^25 - 1)
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local exp = math.random() < 0.5 and 1 or 2^(math.random(-120, 120))
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return sign * val * exp
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end
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local function charcodes(count)
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if count == 0 then return end
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return math.random(0, 0xFF), charcodes(count - 1)
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end
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local function str()
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return string.char(charcodes(math.random(0, 100)))
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end
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local primitives = {atomic, num, str}
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local function primitive()
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return primitives[math.random(1, #primitives)]()
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end
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local function tab(max_actions)
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local root = {}
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local tables = {root}
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local function random_table()
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return tables[math.random(1, #tables)]
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end
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for _ = 1, math.random(1, max_actions) do
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local tab = random_table()
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local value
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if math.random() < 0.5 then
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if math.random() < 0.5 then
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value = random_table()
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else
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value = {}
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table.insert(tables, value)
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end
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else
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value = primitive()
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end
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tab[math.random() < 0.5 and (#tab + 1) or primitive()] = value
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end
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return root
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end
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it("primitives work", function()
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for _ = 1, 1e3 do
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assert_preserves(primitive())
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end
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end)
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it("tables work", function()
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for _ = 1, 100 do
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local fuzzed_table = tab(1e3)
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assert_same(fuzzed_table, table.copy(fuzzed_table))
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assert_preserves(fuzzed_table)
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end
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end)
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end)
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end)
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