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|
package main
import (
"bufio"
"fmt"
"io"
"os"
"os/exec"
"regexp"
"slices"
"strconv"
"strings"
)
type Operation struct {
name string
label string
crosslabel string
strData string
intData int
}
type Token struct {
str string
file string
line int
offset int
}
type Macro struct {
name string
tokens[] Token
}
var progname string;
func tokenize(path string) []Token {
var tokens []Token;
reg := regexp.MustCompile(`\n`)
dat, err := os.ReadFile(path);
if (err != nil) {
fmt.Fprintf(os.Stderr, "%s: error: failed read file '%s'.\n", progname, path)
os.Exit(1)
}
lines := reg.Split(string(dat), -1);
lines = lines[:len(lines) - 1] /* Remove trailing empty line at the end */
/* FIXME: offset value apperas to be one value less when using tabs and first tab is ignored when storing strings */
for lineIndex := 0; lineIndex < len(lines); lineIndex++ {
line := lines[lineIndex]
buf := ""
isStr := false
for offset := 0; offset < len(line); offset++ {
char := string(line[offset])
if char == "#" {
break
}
if char == "\"" {
isStr = !isStr
}
if isStr {
buf += char
continue;
}
if char != " " && char != "\t" {
buf += char
if offset != len(line) - 1 {
continue
}
}
if buf == "" {
continue
}
tokenBuf := Token{str: buf, file: path, line: lineIndex + 1, offset: offset - len(buf) + 1}
tokens = append(tokens, tokenBuf)
buf = ""
}
if isStr {
fmt.Fprintf(os.Stderr, "%s: error: expected `\"`: '%s'.\n", progname, path)
os.Exit(1)
}
}
return tokens
}
func preprocess(rawTokens[] Token) []Token {
incDepth := 0
const incDepthLim = 200
var tokens[] Token
var macros[] Macro
for i := 0; i < len(rawTokens); i++ {
switch rawTokens[i].str {
case "define":
var macroBuf Macro
if i + 1 >= len(rawTokens) {
fmt.Fprintf(os.Stderr, "%s: error: invalid syntax for define: %s: %d:%d.\n",
progname, rawTokens[i].file, rawTokens[i].line, rawTokens[i].offset)
os.Exit(1)
}
macroBuf.name = rawTokens[i + 1].str
for i = i + 2; i < len(rawTokens); i++ {
if rawTokens[i].str == "end" {
break
}
macroBuf.tokens = append(macroBuf.tokens, rawTokens[i])
}
if i == len(rawTokens) {
fmt.Fprintf(os.Stderr, "%s: error: expected `end`: '%s'.\n", progname, rawTokens[i].file)
os.Exit(1)
}
macros = append(macros, macroBuf)
continue
case "include":
if i + 1 >= len(rawTokens) {
fmt.Fprintf(os.Stderr, "%s: error: invalid syntax for include: %s: %d:%d.\n",
progname, rawTokens[i].file, rawTokens[i].line, rawTokens[i].offset)
os.Exit(1)
}
if rawTokens[i + 1].str[0] != '"' {
fmt.Fprintf(os.Stderr, "%s: error: included file must be wrapped with quotes: %s: %d:%d.\n",
progname, rawTokens[i].file, rawTokens[i].line, rawTokens[i].offset)
os.Exit(1)
}
if incDepth == incDepthLim {
fmt.Fprintf(os.Stderr, "%s: error: include depth exceeds 200: %s: %d:%d.\n",
progname, rawTokens[i].file)
os.Exit(1)
}
tmp := rawTokens[i + 1].str
i++
incFile := tmp[1:len(tmp) - 1] /* get rid of the `"` at the beginning and at the end */
rawTokens = slices.Insert(rawTokens, i + 1, tokenize(incFile)...)
incDepth++
continue
case "end":
continue
}
tokens = append(tokens, rawTokens[i])
}
for i := 0; i < len(tokens); i++ {
for y := 0; y < len(macros); y++ {
if macros[y].name == tokens[i].str {
tokens = append(tokens[:i], tokens[i + 1:]...)
tokens = slices.Insert(tokens, i, macros[y].tokens...)
i--
break;
}
}
}
return tokens
}
func parse(tokens[]Token) []Operation {
var ops[] Operation
var variables[] string
var iflabels[] int
var looplabels[] int
var iflabel int = 0
var looplabel int = 0
var stringlabel int = 0
for i := 0; i < len(tokens); i++ {
var op Operation
switch tokens[i].str {
case "+":
op.name = "plus"
case "-":
op.name = "minus"
case "=":
op.name = "equal"
case ">":
op.name = "greater"
case "<":
op.name = "less"
case "dump":
op.name = "dump"
case "dup":
op.name = "duplicate"
case "drop":
op.name = "drop"
case "swap":
op.name = "swap"
case "2swap":
op.name = "2swap"
case "if":
op.name = "if"
op.crosslabel = fmt.Sprintf(".if%d", iflabel)
iflabels = append(iflabels, iflabel)
iflabel++
case "else":
op.name = "else"
op.crosslabel = fmt.Sprintf(".if%d", iflabel)
op.label = fmt.Sprintf(".if%d",iflabels[len(iflabels) - 1])
iflabels = iflabels[:len(iflabels) - 1]
iflabels = append(iflabels, iflabel)
iflabel++
case "fi":
op.name = "fi"
op.label = fmt.Sprintf(".if%d", iflabels[len(iflabels) - 1])
iflabels = iflabels[:len(iflabels) - 1]
case "while":
op.name = "while"
op.label = fmt.Sprintf(".loop%d", looplabel)
looplabels = append(looplabels, looplabel)
case "do":
op.name = "do"
op.crosslabel = fmt.Sprintf(".done%d", looplabels[len(looplabels) - 1])
case "done":
op.name = "done"
op.crosslabel = fmt.Sprintf(".loop%d", looplabels[len(looplabels) - 1])
op.label = fmt.Sprintf(".done%d", looplabels[len(looplabels) - 1])
looplabels = looplabels[:len(looplabels) - 1]
case "push":
if i + 1 >= len(tokens) {
fmt.Fprintf(os.Stderr, "%s: error: push expected variable: %s: %d: %d.\n",
progname, tokens[i].file, tokens[i].line, tokens[i].offset)
os.Exit(1)
}
variableIndex := -1
for y := 0; y < len(variables); y++ {
if tokens[i + 1].str == variables[y] {
variableIndex = y
}
}
if variableIndex == -1 {
fmt.Fprintf(os.Stderr, "%s: error: variable not declared '%s': %s: %d:%d.\n",
progname, tokens[i].str, tokens[i].file, tokens[i].line, tokens[i].offset)
os.Exit(1)
}
op.name = "push"
op.strData = variables[variableIndex]
i++
case "pull":
if i + 1 >= len(tokens) {
fmt.Fprintf(os.Stderr, "%s: error: pull expected variable: %s: %d:%d.\n",
progname, tokens[i].file, tokens[i].line, tokens[i].offset)
os.Exit(1)
}
variableIndex := -1
for y := 0; y < len(variables); y++ {
if tokens[i + 1].str == variables[y] {
variableIndex = y
}
}
if variableIndex == -1 {
panic("undeclared variable")
}
op.name = "pull"
op.strData = variables[variableIndex]
i++
case "var":
if i + 1 >= len(tokens) {
fmt.Fprintf(os.Stderr, "%s: error: var expected a variable: %s: %d:%d.\n",
progname, tokens[i].file, tokens[i].line, tokens[i].offset)
os.Exit(1)
}
op.name = "variable"
op.strData = tokens[i + 1].str
variables = append(variables, tokens[i + 1].str)
i++
}
number, err := strconv.Atoi(tokens[i].str);
if err == nil {
op.name = "number"
op.intData= number
} else if tokens[i].str[0] == '"' {
op.name = "string"
op.strData = tokens[i].str
op.intData = len(tokens[i].str) - 1 /* -2 for removing `"` at the beginning and include \n at the end */
op.label = fmt.Sprintf("string_%d", stringlabel)
stringlabel++
} else if len(tokens[i].str) == 9 && tokens[i].str[:8] == "syscall." {
parameters, err := strconv.Atoi(string(tokens[i].str[8]))
if err != nil {
panic("invalid from for syscall")
}
if parameters < 1 || parameters > 6 {
panic("syscall must be called with a number between 1 and 6")
}
op.name = "syscall"
op.intData = parameters
}
if op.name == "" {
fmt.Fprintf(os.Stderr, "Undefined word `%s` %s: %d:%d\n", tokens[i].str, tokens[i].file, tokens[i].line, tokens[i].offset)
os.Exit(1)
}
ops = append(ops, op)
}
return ops
}
func mapX86_64linux(op Operation) string{
buf := ""
switch op.name {
case "boilerPlateStart":
buf += "section .text\n"
buf += "global _start\n"
buf += "_start:\n"
case "boilerPlateExit":
buf += "\tmov rdi, 0\n"
buf += "\tmov rax, 60\n"
buf += "\tsyscall\n"
case "dumpFunc":
buf += ".dump:\n"
buf += "\tpush rbp\n"
buf += "\tmov rbp, rsp\n"
buf += "\tsub rsp, 48\n"
buf += "\tmov DWORD [rbp-36], edi\n"
buf += "\tmov QWORD [rbp-32], 0\n"
buf += "\tmov QWORD [rbp-24], 0\n"
buf += "\tmov DWORD [rbp-16], 0\n"
buf += "\tmov BYTE [rbp-13], 10\n"
buf += "\tmov DWORD [rbp-4], 18\n"
buf += "\tmov DWORD [rbp-8], 0\n"
buf += "\tcmp DWORD [rbp-36], 0\n"
buf += "\tjns .L3\n"
buf += "\tneg DWORD [rbp-36]\n"
buf += "\tmov DWORD [rbp-8], 1\n"
buf += ".L3:\n"
buf += "\tmov edx, DWORD [rbp-36]\n"
buf += "\tmovsx rax, edx\n"
buf += "\timul rax, rax, 1717986919\n"
buf += "\tshr rax, 32\n"
buf += "\tmov ecx, eax\n"
buf += "\tsar ecx, 2\n"
buf += "\tmov eax, edx\n"
buf += "\tsar eax, 31\n"
buf += "\tsub ecx, eax\n"
buf += "\tmov eax, ecx\n"
buf += "\tsal eax, 2\n"
buf += "\tadd eax, ecx\n"
buf += "\tadd eax, eax\n"
buf += "\tsub edx, eax\n"
buf += "\tmov DWORD [rbp-12], edx\n"
buf += "\tmov eax, DWORD [rbp-12]\n"
buf += "\tadd eax, 48\n"
buf += "\tmov edx, eax\n"
buf += "\tmov eax, DWORD [rbp-4]\n"
buf += "\tcdqe\n"
buf += "\tmov BYTE [rbp-32+rax], dl\n"
buf += "\tmov eax, DWORD [rbp-12]\n"
buf += "\tsub DWORD [rbp-36], eax\n"
buf += "\tmov eax, DWORD [rbp-36]\n"
buf += "\tmovsx rdx, eax\n"
buf += "\timul rdx, rdx, 1717986919\n"
buf += "\tshr rdx, 32\n"
buf += "\tmov ecx, edx\n"
buf += "\tsar ecx, 2\n"
buf += "\tcdq\n"
buf += "\tmov eax, ecx\n"
buf += "\tsub eax, edx\n"
buf += "\tmov DWORD [rbp-36], eax\n"
buf += "\tsub DWORD [rbp-4], 1\n"
buf += "\tcmp DWORD [rbp-36], 0\n"
buf += "\tjne .L3\n"
buf += "\tcmp DWORD [rbp-8], 0\n"
buf += "\tje .L4\n"
buf += "\tmov eax, DWORD [rbp-4]\n"
buf += "\tcdqe\n"
buf += "\tmov BYTE [rbp-32+rax], 45\n"
buf += "\tsub DWORD [rbp-4], 1\n"
buf += ".L4:\n"
buf += "\tmov eax, 20\n"
buf += "\tsub eax, DWORD [rbp-4]\n"
buf += "\tcdqe\n"
buf += "\tmov edx, DWORD [rbp-4]\n"
buf += "\tmovsx rdx, edx\n"
buf += "\tlea rcx, [rbp-32]\n"
buf += "\tadd rcx, rdx\n"
buf += "\tmov rdx, rax\n"
buf += "\tmov rsi, rcx\n"
buf += "\tmov edi, 1\n"
buf += "\tmov rax, 1\n"
buf += "\tsyscall\n"
buf += "\tnop\n"
buf += "\tleave\n"
buf += "\tret\n"
case "plus":
buf += "\tpop rsi\n"
buf += "\tpop rax\n"
buf += "\tadd rax, rsi\n"
buf += "\tpush rax\n"
case "minus":
buf += "\tpop rsi\n"
buf += "\tpop rax\n"
buf += "\tsub rax, rsi\n"
buf += "\tpush rax\n"
case "greater":
buf += "\tmov r10, 0\n"
buf += "\tmov r11, 1\n"
buf += "\tpop rsi\n"
buf += "\tpop rax\n"
buf += "\tcmp rax, rsi\n"
buf += "\tcmovg r10, r11\n"
buf += "\tpush r10\n"
case "less":
buf += "\tmov r10, 0\n"
buf += "\tmov r11, 1\n"
buf += "\tpop rsi\n"
buf += "\tpop rax\n"
buf += "\tcmp rax, rsi\n"
buf += "\tcmovl r10, r11\n"
buf += "\tpush r10\n"
case "equal":
buf += "\tmov r10, 0\n"
buf += "\tmov r11, 1\n"
buf += "\tpop rsi\n"
buf += "\tpop rax\n"
buf += "\tcmp rax, rsi\n"
buf += "\tcmove r10, r11\n"
buf += "\tpush r10\n"
case "dump":
buf += "\tpop rdi\n"
buf += "\tcall .dump\n"
case "duplicate":
buf += "\tpop r10\n"
buf += "\tpush r10\n"
buf += "\tpush r10\n"
case "drop":
buf += "\tpop r10\n"
case "swap":
buf += "\tpop r11\n"
buf += "\tpop r10\n"
buf += "\tpush r11\n"
buf += "\tpush r10\n"
case "2swap":
buf += "\tpop rax\n"
buf += "\tpop rsi\n"
buf += "\tpop r11\n"
buf += "\tpop r10\n"
buf += "\tpush rsi\n"
buf += "\tpush rax\n"
buf += "\tpush r10\n"
buf += "\tpush r11\n"
case "if":
buf += "\tpop r10\n"
buf += "\tcmp r10, 0\n"
buf += fmt.Sprintf("\tje %s\n", op.crosslabel)
case "else":
buf += fmt.Sprintf("\tjmp %s\n%s:\n", op.crosslabel, op.label)
case "fi":
buf += fmt.Sprintf("%s:\n", op.label)
case "while":
buf += fmt.Sprintf("%s:\n", op.label)
case "do":
buf += "\tpop r10\n"
buf += "\tcmp r10, 0\n"
buf += fmt.Sprintf("\tje %s\n", op.crosslabel)
case "done":
buf += fmt.Sprintf("\tjmp %s\n", op.crosslabel)
buf += fmt.Sprintf("%s:\n", op.label)
case "string":
buf += fmt.Sprintf("\tpush %d\n", op.intData)
buf += fmt.Sprintf("\tpush %s\n", op.label)
case "number":
buf += fmt.Sprintf("\tpush %d\n", op.intData)
case "push":
buf += "\tpop r10\n"
buf += fmt.Sprintf("\tmov [%s], r10\n", op.strData)
case "pull":
buf += fmt.Sprintf("\tmov r10, [%s]\n", op.strData)
buf += "\tpush r10\n"
case "syscall":
switch op.intData {
case 7:
buf += "\tpop rax\n"
buf += "\tpop rdi\n"
buf += "\tpop rsi\n"
buf += "\tpop rdx\n"
buf += "\tpop r10\n"
buf += "\tpop r8\n"
buf += "\tpop r9\n"
case 6:
buf += "\tpop rax\n"
buf += "\tpop rdi\n"
buf += "\tpop rsi\n"
buf += "\tpop rdx\n"
buf += "\tpop r10\n"
buf += "\tpop r8\n"
case 5:
buf += "\tpop rax\n"
buf += "\tpop rdi\n"
buf += "\tpop rsi\n"
buf += "\tpop rdx\n"
buf += "\tpop r10\n"
case 4:
buf += "\tpop rax\n"
buf += "\tpop rdi\n"
buf += "\tpop rsi\n"
buf += "\tpop rdx\n"
case 3:
buf += "\tpop rax\n"
buf += "\tpop rdi\n"
buf += "\tpop rsi\n"
case 2:
buf += "\tpop rax\n"
buf += "\tpop rdi\n"
case 1:
buf += "\tpop rax\n"
}
buf += "\tsyscall\n"
buf += "\tpush rax\n"
default:
panic("mapX86_64linux unreachable")
}
return buf
}
func generateX86_64(ops[] Operation, w io.Writer) {
assemblerComment := ";;"
var strings[][2] string
var variables[] string
printDumpFunc := false
fmt.Fprintf(w, mapX86_64linux(Operation{name: "boilerPlateStart"}))
for i := 0; i < len(ops); i++ {
switch ops[i].name {
case "string":
strings = append(strings, [2]string{ops[i].strData, ops[i].label})
case "dump":
printDumpFunc = true
case "variable":
variables = append(variables, ops[i].strData)
continue
}
fmt.Fprintf(w, "\t%s %s\n", assemblerComment, ops[i].name)
fmt.Fprintf(w, mapX86_64linux(ops[i]))
}
fmt.Fprintf(w, mapX86_64linux(Operation{name: "boilerPlateExit"}))
if printDumpFunc {
fmt.Fprintf(w, mapX86_64linux(Operation{name: "dumpFunc"}))
}
fmt.Fprintf(w, "section .bss\n")
for i := 0; i < len(variables); i++ {
fmt.Fprintf(w, "%s: resb 8\n", variables[i])
}
fmt.Fprintf(w, "section .data\n")
for i := 0; i < len(strings); i++ {
fmt.Fprintf(w, "%s: db %s, 10\n", strings[i][1], strings[i][0])
}
}
func main() {
argv := os.Args;
argc := len(argv);
progname = argv[0]
suffix := ".ash"
if argc != 2 {
fmt.Fprintf(os.Stderr, "%s: error: expected one input file.\n", progname)
os.Exit(1)
}
srcFile := argv[argc - 1]
if !strings.HasSuffix(srcFile, suffix) || len(srcFile) < 5 {
fmt.Fprintf(os.Stderr, "%s: error: invalid file format '%s'.\n", progname, srcFile)
os.Exit(1)
}
binFile := srcFile[:len(srcFile) - 4]
assemFile := binFile + ".s"
objFile := binFile + ".o"
_, err := os.Stat(srcFile)
if err != nil {
fmt.Fprintf(os.Stderr, "%s: error: %s.\n", progname, err)
os.Exit(1)
}
file, err := os.Create(assemFile)
if err != nil {
fmt.Fprintf(os.Stderr, "%s: error: %s.\n", progname, err)
os.Exit(1)
}
tokens := tokenize(argv[argc - 1])
tokens = preprocess(tokens)
ops := parse(tokens)
w := bufio.NewWriter(file)
if err != nil {
fmt.Fprintf(os.Stderr, "%s: error: %s.\n", progname, err)
os.Exit(1)
}
generateX86_64(ops, w)
w.Flush()
cmd := exec.Command("nasm", "-felf64", assemFile)
if err := cmd.Run(); err != nil {
fmt.Fprintf(os.Stderr, "%s: error: failed to create object file: %s.\n", progname, err)
os.Exit(1)
}
cmd = exec.Command("ld", "-o", binFile, objFile)
if err := cmd.Run(); err != nil {
fmt.Fprintf(os.Stderr, "%s: error: failed to link object file '%s': %s.\n", progname, objFile, err)
os.Exit(1)
}
}
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