mirror of
https://github.com/CPunch/Cosmo.git
synced 2024-11-21 23:10:05 +00:00
syntax: 'var'->'let' 'function'->'func'
- 'var' has some weird scoping connotations with users of JS. better to change it to 'let', which will decide whether to make the variable a local or a global - 'func' looks visually appealing lol - some minor refactoring done in cparse.c
This commit is contained in:
parent
e335fd95d6
commit
8ac8085d20
14
README.md
14
README.md
@ -5,31 +5,31 @@ Cosmo is a portable scripting language loosely based off of Lua. Cosmo easily al
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```lua
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```lua
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proto Vector
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proto Vector
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function __init(self)
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func __init(self)
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self.vector = []
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self.vector = []
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self.x = 0
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self.x = 0
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end
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end
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function __index(self, key)
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func __index(self, key)
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return self.vector[key]
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return self.vector[key]
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end
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end
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function push(self, val)
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func push(self, val)
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self.vector[self.x++] = val
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self.vector[self.x++] = val
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end
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end
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function pop(self)
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func pop(self)
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return self.vector[--self.x]
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return self.vector[--self.x]
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end
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end
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end
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end
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var vector = Vector()
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let vector = Vector()
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for (var i = 0; i < 4; i++) do
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for (let i = 0; i < 4; i++) do
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vector:push(i)
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vector:push(i)
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end
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end
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for (var i = 0; i < 4; i++) do
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for (let i = 0; i < 4; i++) do
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print(vector:pop() .. " : " .. vector[i])
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print(vector:pop() .. " : " .. vector[i])
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end
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end
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```
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```
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@ -1,8 +1,8 @@
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// just testing continues and breaks
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// just testing continues and breaks
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for (var x = 0; x < 700; x++) do
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for (let x = 0; x < 700; x++) do
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for (var i = 0; true; i++) do
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for (let i = 0; true; i++) do
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var str = i .. "." .. x
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let str = i .. "." .. x
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if (i == 998) then
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if (i == 998) then
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print(i .. " reached")
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print(i .. " reached")
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break // exits the loop
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break // exits the loop
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@ -13,9 +13,9 @@ for (var x = 0; x < 700; x++) do
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end
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end
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// same example as the for loop but done manually using a while loop
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// same example as the for loop but done manually using a while loop
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var i = 0
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let i = 0
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while true do
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while true do
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var str = i .. "." .. x
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let str = i .. "." .. x
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if (i++ == 998) then
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if (i++ == 998) then
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print("done")
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print("done")
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break
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break
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@ -1,20 +1,20 @@
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var strtable = []
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let strtable = []
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var strLen = 4 // length of all strings to generate
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let strLen = 4 // length of all strings to generate
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var AByte = "A":byte() // grabs the ascii value of 'A'
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let AByte = "A":byte() // grabs the ascii value of 'A'
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proto stringBuilder
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proto stringBuilder
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function __init(self, length)
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func __init(self, length)
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self.len = length
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self.len = length
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end
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end
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// we are the iterator object lol
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// we are the iterator object lol
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function __iter(self)
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func __iter(self)
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self.x = 0
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self.x = 0
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return self
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return self
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end
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end
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function __next(self)
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func __next(self)
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var x = self.x++
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let x = self.x++
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// if we've generated all the possible strings, return nil ending the loop
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// if we've generated all the possible strings, return nil ending the loop
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if x >= 26 ^ self.len then
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if x >= 26 ^ self.len then
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@ -22,8 +22,8 @@ proto stringBuilder
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end
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end
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// generate the string
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// generate the string
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var str = ""
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let str = ""
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for (var i = 0; i < self.len; i++) do
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for (let i = 0; i < self.len; i++) do
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str = string.char(AByte + (x % 26)) .. str
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str = string.char(AByte + (x % 26)) .. str
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x = math.floor(x / 26)
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x = math.floor(x / 26)
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@ -1,4 +1,4 @@
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local function fib(num)
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local func fib(num)
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if num <= 1 then
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if num <= 1 then
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return num
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return num
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else
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else
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@ -6,6 +6,6 @@ local function fib(num)
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end
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end
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end
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end
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for (var i = 1; i < 40; i++) do
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for (let i = 1; i < 40; i++) do
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print("The fib number of " .. i .. " is " .. fib(i))
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print("The fib number of " .. i .. " is " .. fib(i))
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end
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end
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@ -1,4 +1,4 @@
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var object = {
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let object = {
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__setter = [
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__setter = [
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"field1" = function(self, val)
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"field1" = function(self, val)
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print("setter for field1 called!")
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print("setter for field1 called!")
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@ -1,22 +1,22 @@
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proto Vector
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proto Vector
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function __init(self)
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func __init(self)
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self.vector = []
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self.vector = []
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self.x = 0
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self.x = 0
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end
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end
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function push(self, val)
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func push(self, val)
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self.vector[self.x++] = val
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self.vector[self.x++] = val
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end
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end
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function pop(self)
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func pop(self)
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return self.vector[--self.x]
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return self.vector[--self.x]
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end
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end
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function __index(self, key)
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func __index(self, key)
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return self.vector[key]
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return self.vector[key]
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end
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end
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function __iter(self)
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func __iter(self)
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// you don't *have* to make a new object, i just wanted to show off anonymous functions
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// you don't *have* to make a new object, i just wanted to show off anonymous functions
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return {__next = (function(self)
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return {__next = (function(self)
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return self.vector[self.iterIndex++]
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return self.vector[self.iterIndex++]
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@ -27,9 +27,9 @@ proto Vector
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end
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end
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end
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end
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var vector = Vector()
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let vector = Vector()
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for (var i = 0; i < 100000; i++) do
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for (let i = 0; i < 100000; i++) do
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vector:push(i)
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vector:push(i)
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end
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end
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@ -1,14 +1,14 @@
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proto Range
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proto Range
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function __init(self, x)
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func __init(self, x)
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self.max = x
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self.max = x
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end
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end
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function __iter(self)
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func __iter(self)
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self.i = 0
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self.i = 0
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return self
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return self
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end
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end
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function __next(self)
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func __next(self)
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if self.i >= self.max then
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if self.i >= self.max then
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return nil // exit iterator loop
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return nil // exit iterator loop
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end
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end
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@ -1,15 +1,15 @@
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proto Test
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proto Test
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function __init(self, x)
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func __init(self, x)
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self.x = x
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self.x = x
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end
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end
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function print(self)
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func print(self)
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print(self.x)
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print(self.x)
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end
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end
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end
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end
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// stressing the GC
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// stressing the GC
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for (var i = 0; i < 100000; i++) do
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for (let i = 0; i < 100000; i++) do
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var x = Test("Hello world " .. i)
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let x = Test("Hello world " .. i)
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x:print()
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x:print()
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end
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end
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@ -1,7 +1,7 @@
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var words = "hello world! this is a sentence with words separated by space":split(" ")
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let words = "hello world! this is a sentence with words separated by space":split(" ")
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var str = ""
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let str = ""
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for (var i = 0; i < #words; i++) do
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for (let i = 0; i < #words; i++) do
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str = str .. words[i]
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str = str .. words[i]
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print(words[i])
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print(words[i])
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end
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end
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@ -1,10 +1,10 @@
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// crafts a dummy proto
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// crafts a dummy proto
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proto test
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proto test
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function __init(self) end
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func __init(self) end
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end
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end
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// instance of test
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// instance of test
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var obj = test()
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let obj = test()
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test.__index = function(self, key)
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test.__index = function(self, key)
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print("__index called!")
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print("__index called!")
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@ -17,16 +17,16 @@ assert(2 / 5 + 3 / 5 == 1, "PEMDAS check #2 failed!")
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// iterator test
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// iterator test
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proto Range
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proto Range
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function __init(self, x)
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func __init(self, x)
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self.max = x
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self.max = x
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end
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end
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function __iter(self)
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func __iter(self)
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self.i = 0
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self.i = 0
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return self
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return self
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end
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end
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function __next(self)
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func __next(self)
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if self.i >= self.max then
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if self.i >= self.max then
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return nil // exit iterator loop
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return nil // exit iterator loop
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end
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end
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@ -35,7 +35,7 @@ proto Range
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end
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end
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end
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end
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var total = 0
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let total = 0
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for i in Range(100) do
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for i in Range(100) do
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total = total + i
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total = total + i
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end
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end
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@ -1,27 +1,27 @@
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proto test
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proto test
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function __init(self, x)
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func __init(self, x)
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self:setArg(x)
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self:setArg(x)
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end
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end
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function __tostring(self)
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func __tostring(self)
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var total = 1
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let total = 1
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for (var i = self.x; i > 0; i = i - 1) do
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for (let i = self.x; i > 0; i = i - 1) do
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total = total * i;
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total = total * i;
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end
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end
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return "The factorial of " .. self.x .. " is " .. total
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return "The factorial of " .. self.x .. " is " .. total
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end
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end
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function setArg(self, x)
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func setArg(self, x)
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self.x = x
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self.x = x
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end
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end
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end
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end
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var t = test(1)
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let t = test(1)
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for (var x = 1; x < 1000; x = x + 1) do
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for (let x = 1; x < 1000; x = x + 1) do
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for (var i = 1; i < 100; i = i + 1) do
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for (let i = 1; i < 100; i = i + 1) do
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t:setArg(i)
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t:setArg(i)
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print(t)
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print(t)
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@ -1,5 +1,5 @@
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// adds all args passed (expects numbers)
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// adds all args passed (expects numbers)
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function add(start, ...args)
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func add(start, ...args)
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// starting at `start`, add up all numbers passed
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// starting at `start`, add up all numbers passed
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local total = start
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local total = start
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for val in args do
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for val in args do
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@ -14,7 +14,7 @@ CReservedWord reservedWords[] = {
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{ TOKEN_END, "end", 3},
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{ TOKEN_END, "end", 3},
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{ TOKEN_FALSE, "false", 5},
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{ TOKEN_FALSE, "false", 5},
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{ TOKEN_FOR, "for", 3},
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{ TOKEN_FOR, "for", 3},
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{TOKEN_FUNCTION, "function", 8},
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{ TOKEN_FUNC, "func", 4},
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{ TOKEN_IF, "if", 2},
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{ TOKEN_IF, "if", 2},
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{ TOKEN_IN, "in", 2},
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{ TOKEN_IN, "in", 2},
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{ TOKEN_LOCAL, "local", 5},
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{ TOKEN_LOCAL, "local", 5},
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@ -25,7 +25,7 @@ CReservedWord reservedWords[] = {
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{ TOKEN_RETURN, "return", 6},
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{ TOKEN_RETURN, "return", 6},
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{ TOKEN_THEN, "then", 4},
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{ TOKEN_THEN, "then", 4},
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{ TOKEN_TRUE, "true", 4},
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{ TOKEN_TRUE, "true", 4},
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{ TOKEN_VAR, "var", 3},
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{ TOKEN_LET, "let", 3},
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{ TOKEN_WHILE, "while", 5}
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{ TOKEN_WHILE, "while", 5}
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};
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};
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@ -57,7 +57,7 @@ typedef enum
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TOKEN_ELSEIF,
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TOKEN_ELSEIF,
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TOKEN_END,
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TOKEN_END,
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TOKEN_FOR,
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TOKEN_FOR,
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TOKEN_FUNCTION,
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TOKEN_FUNC,
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TOKEN_PROTO,
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TOKEN_PROTO,
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TOKEN_IF,
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TOKEN_IF,
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TOKEN_IN,
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TOKEN_IN,
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@ -66,7 +66,7 @@ typedef enum
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TOKEN_OR,
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TOKEN_OR,
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TOKEN_RETURN,
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TOKEN_RETURN,
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TOKEN_THEN,
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TOKEN_THEN,
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TOKEN_VAR,
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TOKEN_LET,
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TOKEN_WHILE,
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TOKEN_WHILE,
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TOKEN_ERROR,
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TOKEN_ERROR,
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74
src/cparse.c
74
src/cparse.c
@ -102,7 +102,7 @@ static int expressionPrecedence(CParseState *pstate, int needed, Precedence prec
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static int expression(CParseState *pstate, int needed, bool forceNeeded);
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static int expression(CParseState *pstate, int needed, bool forceNeeded);
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static void statement(CParseState *pstate);
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static void statement(CParseState *pstate);
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static void declaration(CParseState *pstate);
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static void declaration(CParseState *pstate);
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static void function(CParseState *pstate, FunctionType type);
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static void parseFunction(CParseState *pstate, FunctionType type);
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static void expressionStatement(CParseState *pstate);
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static void expressionStatement(CParseState *pstate);
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static ParseRule *getRule(CTokenType type);
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static ParseRule *getRule(CTokenType type);
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static CObjFunction *endCompiler(CParseState *pstate);
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static CObjFunction *endCompiler(CParseState *pstate);
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@ -590,36 +590,40 @@ static void group(CParseState *pstate, bool canAssign, Precedence prec)
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consume(pstate, TOKEN_RIGHT_PAREN, "Expected ')'");
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consume(pstate, TOKEN_RIGHT_PAREN, "Expected ')'");
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}
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}
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static void _etterOP(CParseState *pstate, uint8_t op, int arg)
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#define WRITE_GLOBAL_OP(pstate, op, arg)
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static void _etterAB(CParseState *pstate, uint8_t a, int b, bool isGlobal)
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{
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{
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writeu8(pstate, op);
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writeu8(pstate, a);
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if (op == OP_GETGLOBAL || op == OP_SETGLOBAL) // globals are stored with a u16
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if (isGlobal) // globals are stored with a u16
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writeu16(pstate, arg);
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writeu16(pstate, b);
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else
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else
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writeu8(pstate, arg);
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writeu8(pstate, b);
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}
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}
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static void namedVariable(CParseState *pstate, CToken name, bool canAssign, bool canIncrement,
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static void namedVariable(CParseState *pstate, CToken name, bool canAssign, bool canIncrement,
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int expectedValues)
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int expectedValues)
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{
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{
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uint8_t opGet, opSet, inc;
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uint8_t opGet, opSet, opInc;
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bool isGlobal = false;
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int arg = getLocal(pstate->compiler, &name);
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int arg = getLocal(pstate->compiler, &name);
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if (arg != -1) {
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if (arg != -1) {
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// we found it in out local table!
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// we found it in our local table!
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opGet = OP_GETLOCAL;
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opGet = OP_GETLOCAL;
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opSet = OP_SETLOCAL;
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opSet = OP_SETLOCAL;
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inc = OP_INCLOCAL;
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opInc = OP_INCLOCAL;
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} else if ((arg = getUpvalue(pstate, pstate->compiler, &name)) != -1) {
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} else if ((arg = getUpvalue(pstate, pstate->compiler, &name)) != -1) {
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opGet = OP_GETUPVAL;
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opGet = OP_GETUPVAL;
|
||||||
opSet = OP_SETUPVAL;
|
opSet = OP_SETUPVAL;
|
||||||
inc = OP_INCUPVAL;
|
opInc = OP_INCUPVAL;
|
||||||
} else {
|
} else {
|
||||||
// local & upvalue wasn't found, assume it's a global!
|
// local & upvalue wasn't found, assume it's a global!
|
||||||
arg = identifierConstant(pstate, &name);
|
arg = identifierConstant(pstate, &name);
|
||||||
opGet = OP_GETGLOBAL;
|
opGet = OP_GETGLOBAL;
|
||||||
opSet = OP_SETGLOBAL;
|
opSet = OP_SETGLOBAL;
|
||||||
inc = OP_INCGLOBAL;
|
opInc = OP_INCGLOBAL;
|
||||||
|
isGlobal = true;
|
||||||
}
|
}
|
||||||
|
|
||||||
if (canAssign && match(pstate, TOKEN_COMMA)) {
|
if (canAssign && match(pstate, TOKEN_COMMA)) {
|
||||||
@ -628,7 +632,7 @@ static void namedVariable(CParseState *pstate, CToken name, bool canAssign, bool
|
|||||||
consume(pstate, TOKEN_IDENTIFIER, "Expected another identifer!");
|
consume(pstate, TOKEN_IDENTIFIER, "Expected another identifer!");
|
||||||
|
|
||||||
namedVariable(pstate, pstate->previous, true, false, expectedValues);
|
namedVariable(pstate, pstate->previous, true, false, expectedValues);
|
||||||
_etterOP(pstate, opSet, arg);
|
_etterAB(pstate, opSet, arg, isGlobal);
|
||||||
valuePopped(pstate, 1);
|
valuePopped(pstate, 1);
|
||||||
} else if (canAssign && match(pstate, TOKEN_EQUAL)) {
|
} else if (canAssign && match(pstate, TOKEN_EQUAL)) {
|
||||||
expectedValues++;
|
expectedValues++;
|
||||||
@ -651,29 +655,21 @@ static void namedVariable(CParseState *pstate, CToken name, bool canAssign, bool
|
|||||||
writeu8(pstate, OP_NIL);
|
writeu8(pstate, OP_NIL);
|
||||||
}
|
}
|
||||||
|
|
||||||
_etterOP(pstate, opSet, arg);
|
_etterAB(pstate, opSet, arg, isGlobal);
|
||||||
valuePopped(pstate, 1);
|
valuePopped(pstate, 1);
|
||||||
} else if (canIncrement && match(pstate, TOKEN_PLUS_PLUS)) { // i++
|
} else if (canIncrement && match(pstate, TOKEN_PLUS_PLUS)) { // i++
|
||||||
// now we increment the value
|
// now we increment the value
|
||||||
writeu8(pstate, inc);
|
writeu8(pstate, opInc);
|
||||||
writeu8(pstate, 128 + 1); // setting signed values in an unsigned int
|
_etterAB(pstate, 128 + 1, arg, isGlobal); // As B(x?)
|
||||||
if (inc == OP_INCGLOBAL) // globals are stored with a u16
|
|
||||||
writeu16(pstate, arg);
|
|
||||||
else
|
|
||||||
writeu8(pstate, arg);
|
|
||||||
valuePushed(pstate, 1);
|
valuePushed(pstate, 1);
|
||||||
} else if (canIncrement && match(pstate, TOKEN_MINUS_MINUS)) { // i--
|
} else if (canIncrement && match(pstate, TOKEN_MINUS_MINUS)) { // i--
|
||||||
// now we increment the value
|
// now we increment the value
|
||||||
writeu8(pstate, inc);
|
writeu8(pstate, opInc);
|
||||||
writeu8(pstate, 128 - 1); // setting signed values in an unsigned int
|
_etterAB(pstate, 128 - 1, arg, isGlobal); // As B(x?)
|
||||||
if (inc == OP_INCGLOBAL) // globals are stored with a u16
|
|
||||||
writeu16(pstate, arg);
|
|
||||||
else
|
|
||||||
writeu8(pstate, arg);
|
|
||||||
valuePushed(pstate, 1);
|
valuePushed(pstate, 1);
|
||||||
} else {
|
} else {
|
||||||
// getter
|
// getter
|
||||||
_etterOP(pstate, opGet, arg);
|
_etterAB(pstate, opGet, arg, isGlobal);
|
||||||
valuePushed(pstate, 1);
|
valuePushed(pstate, 1);
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
@ -705,7 +701,7 @@ static void or_(CParseState *pstate, bool canAssign, Precedence prec)
|
|||||||
|
|
||||||
static void anonFunction(CParseState *pstate, bool canAssign, Precedence prec)
|
static void anonFunction(CParseState *pstate, bool canAssign, Precedence prec)
|
||||||
{
|
{
|
||||||
function(pstate, FTYPE_FUNCTION);
|
parseFunction(pstate, FTYPE_FUNCTION);
|
||||||
}
|
}
|
||||||
|
|
||||||
static void variable(CParseState *pstate, bool canAssign, Precedence prec)
|
static void variable(CParseState *pstate, bool canAssign, Precedence prec)
|
||||||
@ -1079,7 +1075,7 @@ ParseRule ruleTable[] = {
|
|||||||
[TOKEN_ELSEIF] = {NULL, NULL, PREC_NONE},
|
[TOKEN_ELSEIF] = {NULL, NULL, PREC_NONE},
|
||||||
[TOKEN_END] = {NULL, NULL, PREC_NONE},
|
[TOKEN_END] = {NULL, NULL, PREC_NONE},
|
||||||
[TOKEN_FOR] = {NULL, NULL, PREC_NONE},
|
[TOKEN_FOR] = {NULL, NULL, PREC_NONE},
|
||||||
[TOKEN_FUNCTION] = {anonFunction, NULL, PREC_NONE},
|
[TOKEN_FUNC] = {anonFunction, NULL, PREC_NONE},
|
||||||
[TOKEN_PROTO] = {NULL, NULL, PREC_NONE},
|
[TOKEN_PROTO] = {NULL, NULL, PREC_NONE},
|
||||||
[TOKEN_IF] = {NULL, NULL, PREC_NONE},
|
[TOKEN_IF] = {NULL, NULL, PREC_NONE},
|
||||||
[TOKEN_IN] = {NULL, NULL, PREC_NONE},
|
[TOKEN_IN] = {NULL, NULL, PREC_NONE},
|
||||||
@ -1090,7 +1086,7 @@ ParseRule ruleTable[] = {
|
|||||||
[TOKEN_THEN] = {NULL, NULL, PREC_NONE},
|
[TOKEN_THEN] = {NULL, NULL, PREC_NONE},
|
||||||
[TOKEN_WHILE] = {NULL, NULL, PREC_NONE},
|
[TOKEN_WHILE] = {NULL, NULL, PREC_NONE},
|
||||||
[TOKEN_ERROR] = {NULL, NULL, PREC_NONE},
|
[TOKEN_ERROR] = {NULL, NULL, PREC_NONE},
|
||||||
[TOKEN_VAR] = {NULL, NULL, PREC_NONE},
|
[TOKEN_LET] = {NULL, NULL, PREC_NONE},
|
||||||
[TOKEN_EOF] = {NULL, NULL, PREC_NONE}
|
[TOKEN_EOF] = {NULL, NULL, PREC_NONE}
|
||||||
};
|
};
|
||||||
|
|
||||||
@ -1182,7 +1178,7 @@ static void _proto(CParseState *pstate)
|
|||||||
int entries = 0;
|
int entries = 0;
|
||||||
|
|
||||||
while (!match(pstate, TOKEN_END) && !match(pstate, TOKEN_EOF) && !pstate->hadError) {
|
while (!match(pstate, TOKEN_END) && !match(pstate, TOKEN_EOF) && !pstate->hadError) {
|
||||||
if (match(pstate, TOKEN_FUNCTION)) {
|
if (match(pstate, TOKEN_FUNC)) {
|
||||||
// define method
|
// define method
|
||||||
consume(pstate, TOKEN_IDENTIFIER, "Expected identifier for method!");
|
consume(pstate, TOKEN_IDENTIFIER, "Expected identifier for method!");
|
||||||
uint16_t fieldIdent = identifierConstant(pstate, &pstate->previous);
|
uint16_t fieldIdent = identifierConstant(pstate, &pstate->previous);
|
||||||
@ -1191,7 +1187,7 @@ static void _proto(CParseState *pstate)
|
|||||||
writeu8(pstate, OP_LOADCONST);
|
writeu8(pstate, OP_LOADCONST);
|
||||||
writeu16(pstate, fieldIdent);
|
writeu16(pstate, fieldIdent);
|
||||||
|
|
||||||
function(pstate, FTYPE_METHOD);
|
parseFunction(pstate, FTYPE_METHOD);
|
||||||
valuePopped(pstate, 1);
|
valuePopped(pstate, 1);
|
||||||
} else {
|
} else {
|
||||||
errorAtCurrent(pstate, "Illegal syntax!");
|
errorAtCurrent(pstate, "Illegal syntax!");
|
||||||
@ -1409,7 +1405,7 @@ static void whileStatement(CParseState *pstate)
|
|||||||
patchJmp(pstate, exitJump);
|
patchJmp(pstate, exitJump);
|
||||||
}
|
}
|
||||||
|
|
||||||
static void function(CParseState *pstate, FunctionType type)
|
static void parseFunction(CParseState *pstate, FunctionType type)
|
||||||
{
|
{
|
||||||
CCompilerState compiler;
|
CCompilerState compiler;
|
||||||
initCompilerState(pstate, &compiler, type, pstate->compiler);
|
initCompilerState(pstate, &compiler, type, pstate->compiler);
|
||||||
@ -1475,7 +1471,7 @@ static void functionDeclaration(CParseState *pstate)
|
|||||||
if (pstate->compiler->scopeDepth > 0)
|
if (pstate->compiler->scopeDepth > 0)
|
||||||
markInitialized(pstate, var);
|
markInitialized(pstate, var);
|
||||||
|
|
||||||
function(pstate, FTYPE_FUNCTION);
|
parseFunction(pstate, FTYPE_FUNCTION);
|
||||||
|
|
||||||
defineVariable(pstate, var, false);
|
defineVariable(pstate, var, false);
|
||||||
}
|
}
|
||||||
@ -1506,12 +1502,12 @@ static void returnStatement(CParseState *pstate)
|
|||||||
valuePopped(pstate, rvalues);
|
valuePopped(pstate, rvalues);
|
||||||
}
|
}
|
||||||
|
|
||||||
static void localFunction(CParseState *pstate)
|
static void localparseFunction(CParseState *pstate)
|
||||||
{
|
{
|
||||||
uint16_t var = parseVariable(pstate, "Expected identifer!", true);
|
uint16_t var = parseVariable(pstate, "Expected identifer!", true);
|
||||||
markInitialized(pstate, var);
|
markInitialized(pstate, var);
|
||||||
|
|
||||||
function(pstate, FTYPE_FUNCTION);
|
parseFunction(pstate, FTYPE_FUNCTION);
|
||||||
|
|
||||||
defineVariable(pstate, var, true);
|
defineVariable(pstate, var, true);
|
||||||
}
|
}
|
||||||
@ -1732,12 +1728,12 @@ static void expressionStatement(CParseState *pstate)
|
|||||||
{
|
{
|
||||||
int savedPushed = pstate->compiler->pushedValues;
|
int savedPushed = pstate->compiler->pushedValues;
|
||||||
|
|
||||||
if (match(pstate, TOKEN_VAR)) {
|
if (match(pstate, TOKEN_LET)) {
|
||||||
varDeclaration(pstate, false, 0);
|
varDeclaration(pstate, false, 0);
|
||||||
} else if (match(pstate, TOKEN_LOCAL)) {
|
} else if (match(pstate, TOKEN_LOCAL)) {
|
||||||
// force declare a local
|
// force declare a local
|
||||||
if (match(pstate, TOKEN_FUNCTION))
|
if (match(pstate, TOKEN_FUNC))
|
||||||
localFunction(pstate); // force a local function declaration
|
localparseFunction(pstate); // force a local function declaration
|
||||||
else if (match(pstate, TOKEN_PROTO))
|
else if (match(pstate, TOKEN_PROTO))
|
||||||
localProto(pstate); // force a local proto declaration
|
localProto(pstate); // force a local proto declaration
|
||||||
else
|
else
|
||||||
@ -1752,7 +1748,7 @@ static void expressionStatement(CParseState *pstate)
|
|||||||
whileStatement(pstate);
|
whileStatement(pstate);
|
||||||
} else if (match(pstate, TOKEN_FOR)) {
|
} else if (match(pstate, TOKEN_FOR)) {
|
||||||
forLoop(pstate);
|
forLoop(pstate);
|
||||||
} else if (match(pstate, TOKEN_FUNCTION)) {
|
} else if (match(pstate, TOKEN_FUNC)) {
|
||||||
functionDeclaration(pstate);
|
functionDeclaration(pstate);
|
||||||
} else if (match(pstate, TOKEN_PROTO)) {
|
} else if (match(pstate, TOKEN_PROTO)) {
|
||||||
protoDeclaration(pstate);
|
protoDeclaration(pstate);
|
||||||
|
Loading…
Reference in New Issue
Block a user