425 lines
12 KiB
Plaintext
425 lines
12 KiB
Plaintext
local ds = require("DataStructures")
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local Dictionary, Stack, WordInfo, Environment = ds.Dictionary, ds.Stack, ds.WordInfo, ds.Environment
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local helpers = require("CoreHelpers")
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local areNumbers, getActiveDataStack, isNumber, isWhitespace= helpers.areNumbers, helpers.getActiveDataStack, helpers.isNumber, helpers.isWhitespace
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local skipWhitespace, parseToken = helpers.skipWhitespace, helpers.parseToken
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local popTwoOperands = helpers.popTwoOperands
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local defineWord = helpers.defineWord
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local ret = helpers.ret
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local makeCall = helpers.makeCall
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local literal = helpers.literal
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local compile = helpers.compile
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-- Mathematical operations
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local function add(env: Environment)
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local a, b = popTwoOperands(env)
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if areNumbers(a,b) then
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local c = (a as number) + (b as number)
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getActiveDataStack(env):push(c)
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else
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error("invalid operands for add operation!")
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end
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end
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local function sub(env: Environment)
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local a, b = popTwoOperands(env)
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if areNumbers(a, b) then
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local c = (a as number) - (b as number)
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getActiveDataStack(env):push(c)
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else
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error("invalid operands for sub operation!")
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end
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end
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local function mul(env: Environment)
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local a, b = popTwoOperands(env)
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if areNumbers(a, b) then
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local c = (a as number) * (b as number)
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getActiveDataStack(env):push(c)
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else
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error("invalid operands for mul operation!")
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end
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end
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local function div(env: Environment)
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local a, b = popTwoOperands(env)
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if areNumbers(a, b) then
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local c = (a as number) / (b as number)
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getActiveDataStack(env):push(c)
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else
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error("invalid operands for div operation!")
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end
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end
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local function dup(env: Environment)
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local stack = getActiveDataStack(env)
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local top = stack:pop()
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stack:push(top)
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stack:push(top)
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end
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local function swap(env: Environment)
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local stack = getActiveDataStack(env)
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local a, b = popTwoOperands(env)
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stack:push(b)
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stack:push(a)
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end
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local function rot(env: Environment)
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local stack = getActiveDataStack(env)
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local c, b, a= stack:pop(), stack:pop(), stack:pop()
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stack:push(b)
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stack:push(c)
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stack:push(a)
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end
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local function drop(env: Environment)
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local stack = getActiveDataStack(env)
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stack:pop()
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end
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local function over(env: Environment)
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local stack = getActiveDataStack(env)
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local b, a = stack:pop(), stack:pop()
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stack:push(a)
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stack:push(b)
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stack:push(a)
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end
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-- I/O operations
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local function dot(env: Environment)
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local out = env.activeDataStack:pop()
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io.write(tostring(out) as string)
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end
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local twoDup = helpers.makeCall{over, over, ret}
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local function twoSwap(env: Environment)
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local stack = getActiveDataStack(env)
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local d, c, b, a = stack:pop(), stack:pop(), stack:pop(), stack:pop()
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stack:push(c)
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stack:push(d)
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stack:push(a)
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stack:push(b)
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end
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local function twoOver(env: Environment)
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local stack = getActiveDataStack(env)
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local d, c, b, a = stack:pop(), stack:pop(), stack:pop(), stack:pop()
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stack:push(a)
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stack:push(b)
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stack:push(c)
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stack:push(d)
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stack:push(a)
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stack:push(b)
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end
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local function nip(env: Environment)
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local stack = getActiveDataStack(env)
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local b, _ = stack:pop(), stack:pop()
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stack:push(b)
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end
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local tuck = helpers.makeCall{swap, over, ret}
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local function roll(env: Environment)
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local stack = getActiveDataStack(env)
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local u = stack:pop()
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local bufferStack = Stack:new()
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if u is number then
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local v = u as number
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while(v > 0) do
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local item = stack:pop()
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bufferStack:push(item)
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v = v - 1
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end
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local newTop = stack:pop()
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local x = (u as number)
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while(x > 0) do
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local item = bufferStack:pop()
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stack:push(item)
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x = x - 1
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end
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stack:push(newTop)
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else
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error("u is not a number")
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end
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end
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local function getExecutionToken(env: Environment)
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local stack = getActiveDataStack(env)
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skipWhitespace(env)
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local name: string = parseToken(env)
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for _, dictionary in ipairs(env.dictionaries) do
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local wordinfo = dictionary:lookup(name)
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if wordinfo then
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stack:push((wordinfo as WordInfo).func)
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break
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end
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end
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end
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local function execute(env: Environment)
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local stack = getActiveDataStack(env)
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local func: function(Environment) = stack:pop() as function(Environment)
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func(env)
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end
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local function enterCompileMode(e: Environment)
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e.compileState = true
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end
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local function exitCompileMode(e: Environment)
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e.compileState = false
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end
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local function colon(e: Environment)
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skipWhitespace(e)
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local name: string | nil = parseToken(e)
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if not name then
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e.running = false
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return
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end
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e.currentDefinitionName = name as string
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enterCompileMode(e)
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end
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local function semicolon(e: Environment)
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table.insert(e.currentDefinition as {function(Environment)}, helpers.ret)
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local instrs = e.currentDefinition
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local call = helpers.makeCall(instrs as {function(Environment)})
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local dict = e.dictionaries[1]
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defineWord(dict, e.currentDefinitionName, call, false)
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e.mostRecentDefinition = e.currentDefinitionName
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e.currentDefinitionName = nil
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e.currentDefinition = {}
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exitCompileMode(e)
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end
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local function toCompileStack(e: Environment)
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local dataStack = getActiveDataStack(e)
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local compileStack = e.compilerStack
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local val = dataStack:pop()
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compileStack:push(val)
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end
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local function fromCompileStack(e: Environment)
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e.activeDataStack:push(e.compilerStack:pop())
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end
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local function getDefinitionIndex(e: Environment)
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e.activeDataStack:push(#e.currentDefinition)
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end
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local function unresolvedZeroBranch(e: Environment)
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helpers.noop(e)
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end
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local function unresolvedUncondBranch(e: Environment)
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helpers.noop(e)
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end
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local function getResolvedZeroBranch(destinationIndex: integer): function(Environment)
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return function(e: Environment)
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local flag = e.activeDataStack:pop()
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if flag == 0 or not flag then
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e.instructionPointer.index = destinationIndex
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end
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end
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end
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local function resolveBranch(e: Environment, sourceIndex: integer, destinationIndex: integer): function(Environment)
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if e.currentDefinition[sourceIndex] == unresolvedZeroBranch then
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return function(e: Environment)
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local flag = e.activeDataStack:pop()
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if flag == 0 or not flag then
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e.instructionPointer.index = destinationIndex
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end
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end
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elseif e.currentDefinition[sourceIndex] == unresolvedUncondBranch then
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return function(e: Environment)
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e.instructionPointer.index = destinationIndex
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end
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end
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-- TODO: abort if none of the checks succeed
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end
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local function forthIf(e: Environment)
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table.insert(e.currentDefinition as {function(Environment)}, unresolvedZeroBranch)
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getDefinitionIndex(e)
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toCompileStack(e)
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end
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local function patchBranch(e: Environment)
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local branchIndex = e.activeDataStack:pop() as integer
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local destinationIndex = e.activeDataStack:pop() as integer
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e.currentDefinition[branchIndex as integer] = resolveBranch(e,branchIndex,destinationIndex)
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end
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local function forthThen(e: Environment)
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getDefinitionIndex(e)
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fromCompileStack(e)
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patchBranch(e)
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end
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local function forthElse(e: Environment)
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table.insert(e.currentDefinition as {function(Environment)}, unresolvedUncondBranch)
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getDefinitionIndex(e)
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fromCompileStack(e)
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patchBranch(e)
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getDefinitionIndex(e)
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toCompileStack(e)
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end
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local function cmplt(e: Environment)
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local a, b = popTwoOperands(e)
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e.activeDataStack:push((a as number) < (b as number))
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end
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local function cmplte(e: Environment)
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local a, b = popTwoOperands(e)
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e.activeDataStack:push((a as number) <= (b as number))
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end
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local function cmpe(e: Environment)
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local a, b = popTwoOperands(e)
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e.activeDataStack:push((a as number) == (b as number))
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end
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local function cmpgte(e: Environment)
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local a, b = popTwoOperands(e)
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e.activeDataStack:push((a as number) >= (b as number))
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end
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local function cmpgt(e: Environment)
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local a, b = popTwoOperands(e)
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e.activeDataStack:push((a as number) > (b as number))
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end
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local function cmpne(e: Environment)
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local a, b = popTwoOperands(e)
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e.activeDataStack:push((a as number) ~= (b as number))
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end
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local function markImmediate(e: Environment)
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helpers.searchDictionaries(e, e.mostRecentDefinition).immediate = true
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end
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local function forthBegin(e: Environment)
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getDefinitionIndex(e)
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toCompileStack(e)
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end
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local function forthUntil(e: Environment)
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fromCompileStack(e)
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table.insert(e.currentDefinition as {function(Environment)}, unresolvedZeroBranch)
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getDefinitionIndex(e)
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patchBranch(e)
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end
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local function forthAgain(e: Environment)
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fromCompileStack(e)
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table.insert(e.currentDefinition as {function(Environment)}, unresolvedUncondBranch)
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getDefinitionIndex(e)
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patchBranch(e)
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end
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local function forthWhile(e: Environment)
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fromCompileStack(e)
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table.insert(e.currentDefinition as {function(Environment)}, unresolvedZeroBranch)
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getDefinitionIndex(e)
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toCompileStack(e)
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toCompileStack(e)
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end
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local function forthRepeat(e: Environment)
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fromCompileStack(e)
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table.insert(e.currentDefinition as {function(Environment)}, unresolvedUncondBranch)
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getDefinitionIndex(e)
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patchBranch(e)
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getDefinitionIndex(e)
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fromCompileStack(e)
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patchBranch(e)
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end
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local function stringLiteral(e: Environment)
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local str: string | nil = ""
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local chr: string | nil = ""
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if not e.activeInputStream:curr() then e.activeDataStack:push("") end
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while(not (chr == "\"") and chr ~= nil) do
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str = str..(chr as string)
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chr = e.activeInputStream:next()
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end
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e.activeInputStream:next()
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e.activeDataStack:push(str as string)
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end
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local CoreWords = Dictionary:new()
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local addInfo = WordInfo:new(add, false)
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local subInfo = WordInfo:new(sub, false)
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local mulInfo = WordInfo:new(mul, false)
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local divInfo = WordInfo:new(div, false)
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local dotInfo = WordInfo:new(dot, false)
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local dupInfo = WordInfo:new(dup, false)
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local swapInfo = WordInfo:new(swap, false)
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local rotInfo = WordInfo:new(rot, false)
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local dropInfo = WordInfo:new(drop, false)
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local overInfo = WordInfo:new(over, false)
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local twoDupInfo = WordInfo:new(twoDup, false)
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local twoSwapInfo = WordInfo:new(twoSwap, false)
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local twoOverInfo = WordInfo:new(twoOver, false)
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local nipInfo = WordInfo:new(nip, false)
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defineWord(CoreWords, "TUCK", tuck, false)
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defineWord(CoreWords, "ROLL", roll, false)
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defineWord(CoreWords, "'", getExecutionToken, false)
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defineWord(CoreWords, "EXECUTE", execute, false)
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defineWord(CoreWords, "[", exitCompileMode, true)
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defineWord(CoreWords, "]", enterCompileMode, false)
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defineWord(CoreWords, "COMPILE,", compile, true)
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defineWord(CoreWords, "LITERAL", literal, true)
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defineWord(CoreWords, ":", colon, true)
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defineWord(CoreWords, ";", semicolon, true)
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defineWord(CoreWords, ">C",toCompileStack, false)
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defineWord(CoreWords, "C>", fromCompileStack, false)
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defineWord(CoreWords, "DP", getDefinitionIndex, false)
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defineWord(CoreWords, "IF", forthIf, true)
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defineWord(CoreWords, "THEN", forthThen, true)
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defineWord(CoreWords, "ELSE", forthElse, true)
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defineWord(CoreWords, "IMMEDIATE", markImmediate, false)
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defineWord(CoreWords, "BEGIN", forthBegin, true)
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defineWord(CoreWords, "UNTIL", forthUntil, true)
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defineWord(CoreWords, "WHILE", forthWhile, true)
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defineWord(CoreWords, "REPEAT", forthRepeat, true)
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defineWord(CoreWords, "AGAIN", forthAgain, true)
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defineWord(CoreWords,"<", cmplt, false)
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defineWord(CoreWords,"<=", cmplte, false)
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defineWord(CoreWords,"=", cmpe, false)
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defineWord(CoreWords,">=", cmpgte, false)
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defineWord(CoreWords,">", cmpgt, false)
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defineWord(CoreWords,"<>", cmpne, false)
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defineWord(CoreWords,"S\"", stringLiteral, false)
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CoreWords:define("+", addInfo)
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CoreWords:define("-", subInfo)
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CoreWords:define("*", mulInfo)
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CoreWords:define("/", divInfo)
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CoreWords:define(".", dotInfo)
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CoreWords:define("DUP", dupInfo)
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CoreWords:define("SWAP", swapInfo)
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CoreWords:define("ROT", rotInfo)
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CoreWords:define("DROP", dropInfo)
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CoreWords:define("OVER", overInfo)
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CoreWords:define("2DUP", twoDupInfo)
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CoreWords:define("2SWAP", twoSwapInfo)
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CoreWords:define("2OVER", twoOverInfo)
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CoreWords:define("NIP", nipInfo)
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local sqr = {dup, mul, ret}
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local sqrf = makeCall(sqr)
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defineWord(CoreWords, "SQR", sqrf, false)
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return CoreWords
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