mirror of
https://github.com/luau-lang/luau.git
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e5ec0cdff3
## What's changed - `bit32.byteswap` added ([RFC](4f543ec23b/docs/function-bit32-byteswap.md
)) - Buffer library implementation ([RFC](4f543ec23b/docs/type-byte-buffer.md
)) - Fixed a missing `stdint.h` include - Fixed parser limiter for recursive type annotations being kind of weird (fixes #645) ### Native Codegen - Fixed a pair of issues when lowering `bit32.extract` - Fixed a narrow edge case that could result in an infinite loop without an interruption - Fixed a negative array out-of-bounds access issue - Temporarily reverted linear block predecessor value propagation ### New type solver - We now type check assignments to annotated variables - Fixed some test cases under local type inference - Moved `isPending` checks for type families to improve performance - Optimized our process for testing if a free type is sufficiently solved - Removed "none ptr" from lea instruction disassembly logging ### Build system & tooling - CMake configuration now validates dependencies to maintain separation between components - Improvements to the fuzzer coverage - Deduplicator for fuzzed callstacks --------- Co-authored-by: Arseny Kapoulkine <arseny.kapoulkine@gmail.com> Co-authored-by: Vyacheslav Egorov <vegorov@roblox.com> Co-authored-by: Andy Friesen <afriesen@roblox.com> Co-authored-by: Aaron Weiss <aaronweiss@roblox.com> Co-authored-by: Vighnesh Vijay <vvijay@roblox.com>
278 lines
5.1 KiB
Lua
278 lines
5.1 KiB
Lua
-- This file is part of the Luau programming language and is licensed under MIT License; see LICENSE.txt for details
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print("testing native code generation")
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assert((function(x, y)
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-- trigger a linear sequence
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local t1 = x + 2
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local t2 = x - 7
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local a = x * 10
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local b = a + 1
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a = y -- update 'a' version
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local t = {} -- call to allocate table forces a spill
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local c = x * 10
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return c, b, t, t1, t2
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end)(5, 10) == 50)
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assert((function(x)
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local oops -- split to prevent inlining
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function oops()
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end
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-- x is checked to be a number here; we can not execute a reentry from oops() because optimizer assumes this holds until return
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local y = math.abs(x)
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oops()
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return y * x
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end)("42") == 1764)
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local function fuzzfail1(...)
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repeat
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_ = nil
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until not {}
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for _ in ... do
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for l0=_,_ do
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end
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return
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end
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end
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local function fuzzfail2()
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local _
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do
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repeat
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_ = typeof(_),{_=_,}
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_ = _(_._)
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until _
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end
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end
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assert(pcall(fuzzfail2) == false)
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local function fuzzfail3()
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function _(...)
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_({_,_,true,},{...,},_,not _)
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end
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_()
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end
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assert(pcall(fuzzfail3) == false)
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local function fuzzfail4()
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local _ = setmetatable({},setmetatable({_=_,},_))
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return _(_:_())
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end
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assert(pcall(fuzzfail4) == false)
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local function fuzzfail5()
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local _ = bit32.band
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_(_(_,0),_)
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_(_,_)
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end
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assert(pcall(fuzzfail5) == false)
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local function fuzzfail6(_)
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return bit32.extract(_,671088640,_)
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end
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assert(pcall(fuzzfail6, 1) == false)
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local function fuzzfail7(_)
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return bit32.extract(_,_,671088640)
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end
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assert(pcall(fuzzfail7, 1) == false)
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local function fuzzfail8(...)
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local _ = _,_
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_.n0,_,_,_,_,_,_,_,_._,_,_,_[...],_,_,_ = nil
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_,n0,_,_,_,_,_,_,_,_,l0,_,_,_,_ = nil
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function _()
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end
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_._,_,_,_,_,_,_,_,_,_,_[...],_,n0[l0],_ = nil
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_[...],_,_,_,_,_,_,_,_()[_],_,_,_,_,_ = _(),...
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end
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assert(pcall(fuzzfail8) == false)
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local function fuzzfail9()
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local _ = bit32.bor
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local x = _(_(_,_),_(_,_),_(-16834560,_),_(_(- _,-2130706432)),- _),_(_(_,_),_(-16834560,-2130706432))
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end
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assert(pcall(fuzzfail9) == false)
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local function fuzzfail10()
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local _
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_ = false,if _ then _ else _
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_ = not _
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l0,_[l0] = not _
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end
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assert(pcall(fuzzfail10) == false)
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local function fuzzfail11(x, ...)
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return bit32.arshift(bit32.bnot(x),(...))
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end
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assert(fuzzfail11(0xffff0000, 8) == 0xff)
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local function fuzzfail12()
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_,_,_,_,_,_,_,_ = not _, not _, not _, not _, not _, not _, not _, not _
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end
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assert(pcall(fuzzfail12) == true)
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local function fuzzfail13()
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_,_,_,_,_,_,_,_,_,_,_,_,_,_,_,_ = not _, not _, not _, not _, not _, not _, not _, not _, not _, not _, not _, not _, not _, not _, not _, not _
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end
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assert(pcall(fuzzfail13) == true)
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local function fuzzfail14()
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for l0=771751936,_ do
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for l0=771751936,0 do
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while 538970624 do
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end
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end
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end
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end
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assert(pcall(fuzzfail14) == false)
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local function fuzzfail15()
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local a
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if a then
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repeat until a
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else
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local b = `{a}`
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a = nil
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end
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end
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assert(pcall(fuzzfail15) == true)
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local function fuzzfail16()
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_ = {[{[2]=77,_=_,[2]=_,}]=not _,}
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_ = {77,[2]=11008,[2]=_,[0]=_,}
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end
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assert(pcall(fuzzfail16) == true)
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local function fuzzfail17()
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return bit32.extract(1293942816,1293942816)
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end
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assert(pcall(fuzzfail17) == false)
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local function fuzzfail18()
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return bit32.extract(7890276,0)
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end
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assert(pcall(fuzzfail18) == true)
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assert(fuzzfail18() == 0)
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local function arraySizeInv1()
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local t = {1, 2, nil, nil, nil, nil, nil, nil, nil, true}
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table.insert(t, 3)
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return t[10]
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end
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assert(arraySizeInv1() == true)
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local function arraySizeInv2()
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local t = {1, 2, nil, nil, nil, nil, nil, nil, nil, true}
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local u = {a = t}
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table.insert(u.a, 3) -- aliased modifiction of 't' register through other value
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return t[10]
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end
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assert(arraySizeInv2() == true)
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local function nilInvalidatesSlot()
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local function tabs()
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local t = { x=1, y=2, z=3 }
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setmetatable(t, { __index = function(t, k) return 42 end })
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return t, t
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end
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local t1, t2 = tabs()
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for i=1,2 do
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local a = t1.x
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t2.x = nil
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local b = t1.x
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t2.x = 1
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assert(a == 1 and b == 42)
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end
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end
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nilInvalidatesSlot()
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local function arraySizeOpt1(a)
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a[1] += 2
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a[1] *= 3
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table.insert(a, 3)
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table.insert(a, 4)
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table.insert(a, 5)
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table.insert(a, 6)
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a[1] += 4
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a[1] *= 5
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return a[1] + a[5]
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end
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assert(arraySizeOpt1({1}) == 71)
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local function arraySizeOpt2(a, i)
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a[i] += 2
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a[i] *= 3
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table.insert(a, 3)
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table.insert(a, 4)
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table.insert(a, 5)
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table.insert(a, 6)
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a[i] += 4
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a[i] *= 5
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return a[i] + a[5]
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end
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assert(arraySizeOpt2({1}, 1) == 71)
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function deadLoopBody(n)
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local r = 0
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if n and false then
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for i = 1, n do
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r += 1
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end
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end
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return r
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end
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assert(deadLoopBody(5) == 0)
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function arrayIndexingSpecialNumbers1(a, b, c)
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local arr = table.create(100000)
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arr[a] = 9
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arr[b-1] = 80
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arr[b] = 700
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arr[b+1] = 6000
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arr[c-1] = 50000
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arr[c] = 400000
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arr[c+1] = 3000000
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return arr[1] + arr[255] + arr[256] + arr[257] + arr[65535] + arr[65536] + arr[65537]
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end
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assert(arrayIndexingSpecialNumbers1(1, 256, 65536) == 3456789)
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return('OK')
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