mirror of
https://gitee.com/anod/open_agb_firm.git
synced 2025-05-06 05:44:11 +08:00
721 lines
20 KiB
Rust
721 lines
20 KiB
Rust
use std::fs;
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use serde_json::Value;
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use byteorder::{LittleEndian, ByteOrder};
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use std::collections::HashMap;
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use std::collections::BTreeMap;
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type Module = Vec<u8>;
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type LockKey = Vec<String>;
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type LockHole = (String, Vec< LockKey >);
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#[derive(Default)]
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struct Lock {
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name: String,
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holes: Vec< LockHole >,
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}
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#[derive(Debug)]
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enum ParserState {
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WaitLock,
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ReadLock,
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WaitHole,
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ReadHole,
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ReadKey,
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WaitPart,
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NeedPart,
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}
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const PASSHOLE: [&str; 2] = ["text", "off"];
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const HEX: &str = "0123456789abcdefABCDEF";
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struct ParserCtx<'a>{
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state: ParserState,
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token: Vec<char>,
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line: u32,
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file: &'a String,
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code: u32,
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locks: Vec< Lock >,
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currlock: Option<Lock>,
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currhole: Option<LockHole>,
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output: &'a mut Vec< (u32, Module) >,
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}
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fn token_str( ctx: &mut ParserCtx ) -> String {
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if ctx.token.len() == 0 {
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"".to_string()
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}
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else {
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let retval = String::from_iter( &ctx.token );
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ctx.token.clear();
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retval
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}
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}
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fn error( ctx: &ParserCtx, str: String ) {
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if ctx.currlock.is_some() {
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panic!("{} at line: {} in lock {:?} [{}]", str, ctx.line, ctx.currlock.iter().next().unwrap().name, ctx.file);
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}
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else {
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panic!("{} at line: {} in lock {:?} [{}]", str, ctx.line, "<nolock>".to_string(), ctx.file);
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}
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}
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enum EntData<'a> {
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Names(Vec<&'a String>),
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Cmds(&'a Vec<LockKey>),
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}
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struct LadeCtx {
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strtable: Vec<u8>,
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idxtable: Vec<u16>,
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cmdtable: Vec<u32>,
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strcache: HashMap<String, u16>,
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}
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#[inline(always)]
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fn make_id( a: usize, b: usize ) -> u32 { (a | b<<16).try_into().unwrap() }
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fn find_index( t: &Vec<u8>, tr: &[u8] ) -> i16 {
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let rlen = tr.len();
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if rlen > t.len() { return -1; }
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let limit = t.len() - rlen;
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for i in 0..limit {
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if t[i + rlen] != 0 {
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continue
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}
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let mut eq = true;
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for j in 0..rlen {
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if t[i+j] != tr[j] {
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eq = false;
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break;
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}
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}
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if eq { return i.try_into().unwrap(); }
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}
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-1
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}
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fn ut_push( t: &mut Vec<u8>, tr: &[u8] ) -> u16 {
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let off = t.len();
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t.reserve( tr.len() + 1 );
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t.extend_from_slice(tr);
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t.push(0);
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off.try_into().unwrap()
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}
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fn add_string( list: &Vec<&String>, ctx: &mut LadeCtx ) -> Vec<u16> {
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let mut ret: Vec<u16> = Vec::with_capacity(list.len());
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for tr in list.iter() {
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let res = ctx.strcache.get(&tr.to_string());
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if let Some(pos) = res {
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ret.push( *pos );
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}
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else {
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let code: &[u8] = tr.as_bytes();
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let off: i16 = find_index(&ctx.strtable, code);
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let res: u16 = if off < 0 { ut_push(&mut ctx.strtable, code) } else { off.try_into().unwrap() };
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ctx.strcache.insert(tr.to_string(), res);
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ret.push( res );
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}
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}
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return ret;
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}
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fn add_str_index( list: &Vec<u16>, ctx: &mut LadeCtx ) -> u32 {
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if list.len() == 0 { return 0; }
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if ctx.strtable.len() > 0xffff {
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panic!("string table is too big.")
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}
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let ret: u32 = ctx.idxtable.len().try_into().unwrap();
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ctx.idxtable.reserve( list.len() );
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ctx.idxtable.extend( list.iter() );
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return ret*2;
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}
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fn assemble_cheat( list: &Vec<LockKey>, dup: &mut BTreeMap<u32, u16>, hole: u16, order: &String ) -> Vec<u32> {
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let from_t_addr = |taddr| {
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match u32::from_str_radix(taddr, 16) {
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Ok(n) => {
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if n == 0 || n > 0x41fffff {
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panic!("get an invalid address: {}", taddr);
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}
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if n < 0x3ffff { return n | 0x200_0000; }
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else if 0 == (n & 0xf000000) { return (n&0xffff) | 0x3000000; }
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else { return n; }
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},
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Err(_e) => panic!("get an invalid address: {} in {}", taddr, order),
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}
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};
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let mut addrval: BTreeMap<u32, u32> = BTreeMap::new();
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for command in list.iter() {
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if command.len() == 0 { continue; }
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let mut iter = command.iter();
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let addr = from_t_addr( iter.next().unwrap() );
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let cnt = (command.len() - 1).try_into().unwrap();
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for pos in 0..cnt {
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let r = iter.next().unwrap();
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match u32::from_str_radix(r, 16) {
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Ok(val) => { addrval.insert(addr + pos, val); },
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Err(_e) => panic!("cannot get valid cheat val {} in {}", r, order),
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}
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}
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}
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let mut ordered: Vec<(u32, u32)> = addrval.iter().map(|(&a,&b)| (a,b)).collect();
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ordered.sort_by( |a, b| a.0.cmp(&b.0) );
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let mut blocks: Vec<u32> = Vec::new();
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let mut curr: (u32, u32, u32) = (0, 0, 0);
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for (addr, value) in ordered.iter() {
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dup.insert(*addr, hole);
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if curr.2 == 0 {
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curr = (*addr, *value, 1);
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}
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else {
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if curr.1 == *value && curr.0 + curr.2 == *addr {
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curr.2 = curr.2 + 1;
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}
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else {
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blocks.push( curr.0 );
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blocks.push( (curr.2<<8) | curr.1 );
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curr = (*addr, *value, 1);
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}
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}
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}
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if curr.2 != 0 {
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blocks.push( curr.0 );
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blocks.push( (curr.2<<8) | curr.1 );
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}
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return blocks;
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}
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fn add_command( list: &Vec<u32>, ctx: &mut LadeCtx ) -> u32 {
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let ret:u32 = ctx.cmdtable.len().try_into().unwrap();
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ctx.cmdtable.reserve( list.len() );
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ctx.cmdtable.extend( list.iter() );
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return ret * 4;
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}
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fn lade( list: &Vec<Lock>, code: u32, order: &String ) -> (u32, Module) {
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let mut rootstr: Vec<&String> = Vec::new();
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let mut names: Vec<&String> = Vec::new();
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let mut enttable: Vec<(u32, EntData)> = Vec::new();
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for (i, lock) in list.iter().enumerate() {
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rootstr.push( &lock.name );
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names.push( &lock.name );
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let mut holestr: Vec<&String> = Vec::with_capacity( lock.holes.len() );
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let colname = lock.holes.len() > 1;
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for (index, (name, cmd)) in lock.holes.iter().enumerate() {
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holestr.push( name );
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if colname { names.push( name ); }
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enttable.push( (make_id(i+1, index+1), EntData::Cmds(&cmd)) );
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}
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enttable.push( (make_id(i+1, 0), EntData::Names(holestr)) );
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}
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enttable.push( (make_id(0, 0), EntData::Names(rootstr) ) );
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if enttable.len() > 0xffff {
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panic!("entry count is overflow in file {}", order);
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}
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enttable.sort_by( |a, b| a.0.cmp( &b.0 ) );
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names.sort_by( |a, b| if a.len() == b.len() { a.cmp(&b) } else { b.len().cmp( &a.len() ) } );
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let mut ctx: LadeCtx = LadeCtx{
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strtable: Vec::with_capacity( 1024 ),
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idxtable: Vec::with_capacity( 128 ),
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cmdtable: Vec::with_capacity( 2048 ),
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strcache: HashMap::new(),
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};
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add_string(&names, &mut ctx);
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let mut entbytelist: Vec<(u32, u32, u32)> = Vec::with_capacity( enttable.len() );
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let emptylist: Vec<&String> = Vec::new();
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let mut holedup: BTreeMap<u32, u16> = BTreeMap::new();
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for (id, data) in enttable.iter() {
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match data {
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EntData::Names( names ) => {
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let idxlist = add_string( if *id == 0 { names } else { if names.len() > 1 { names } else { &emptylist } }, &mut ctx );
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let location = add_str_index( &idxlist, &mut ctx );
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entbytelist.push( (*id, location, idxlist.len().try_into().unwrap()) );
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},
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EntData::Cmds( cmds ) => {
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let armbytecode = assemble_cheat( cmds, &mut holedup, (id & 0xffff).try_into().unwrap(), &order );
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let location = add_command( &armbytecode, &mut ctx );
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entbytelist.push( (*id, location, armbytecode.len().try_into().unwrap()) );
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},
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}
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}
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let mut xv = code;
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for cmd in ctx.cmdtable.iter() {
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xv = xv ^ cmd;
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}
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let bin = pack( entbytelist, &ctx.strtable, &ctx.idxtable, &ctx.cmdtable );
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return (xv, bin);
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}
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fn align( n: usize, base: usize ) -> usize {
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let ext = n % base;
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if ext == 0 { n } else { n + base - ext }
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}
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fn pack( entlist: Vec<(u32,u32,u32)>, strlist: &Vec<u8>, idxlist: &Vec<u16>, cmdlist: &Vec<u32> ) -> Module {
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let entrysize: usize = 12;
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let strbase = 2 + entlist.len() * entrysize;
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let idxbase = strbase + strlist.len();
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let cmdbase = idxbase + idxlist.len() * 2;// u16=2B
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let nonalign_size = cmdbase + cmdlist.len() * 4;// u32=4B
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let size = align(nonalign_size, 32);
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let mut result: Module = vec![0u8; size];
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LittleEndian::write_u16(&mut result[0..2], entlist.len().try_into().unwrap());
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for (i, entry) in entlist.iter().enumerate() {
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let offset = 2 + i * entrysize;
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let locbase:u32;
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if entry.0 > 0xffff {
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locbase = cmdbase.try_into().unwrap();
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}
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else {
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locbase = idxbase.try_into().unwrap();
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}
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LittleEndian::write_u32(&mut result[offset..offset+4], entry.0);
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LittleEndian::write_u32(&mut result[offset+4..offset+8], locbase + entry.1);
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LittleEndian::write_u32(&mut result[offset+8..offset+12], entry.2);
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}
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// string table
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result[strbase..idxbase].copy_from_slice( &strlist );
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// idxes table
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LittleEndian::write_u16_into(idxlist, &mut result[idxbase..cmdbase]);
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// instruction table
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LittleEndian::write_u32_into(cmdlist, &mut result[cmdbase..nonalign_size]);
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return result;
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}
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fn incr( ch: char, ctx: &mut ParserCtx ) {
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match ch {
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'[' => {
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match ctx.state {
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ParserState::WaitLock | ParserState::ReadHole | ParserState::NeedPart => {
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ctx.state = ParserState::ReadLock;
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if ctx.currlock.is_some() {
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let currlock = ctx.currlock.take().unwrap();
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ctx.locks.push( currlock );
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}
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let tmp = Lock {
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name: "".to_string(),
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holes: Vec::new(),
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};
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ctx.currlock = Some( tmp );
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},
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ParserState::WaitPart => {},
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_ => error( ctx, format!("error occur [ on {:?}", ctx.state) ),
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}
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},
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']' => {
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match ctx.state {
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ParserState::ReadLock => {
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ctx.state = ParserState::WaitHole;
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let name = token_str(ctx);
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if name.to_lowercase() == "gameinfo" {
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ctx.output.push( lade(&ctx.locks, ctx.code, &ctx.file) );
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ctx.state = ParserState::WaitPart;
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ctx.locks = Vec::new();
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ctx.currhole = None;
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ctx.currlock = None;
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}
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else if !name.is_empty() {
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ctx.currlock = Some( Lock {
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name: name.to_string(),
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holes: Vec::new(),
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});
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ctx.currhole = None;
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}
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else {
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panic!("empty lock name {}", ctx.file);
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}
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},
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ParserState::WaitPart => {},
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ParserState::NeedPart => {
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ctx.state = ParserState::WaitPart;
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},
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_ => error( ctx, format!("error occur ] on {:?}", ctx.state) ),
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}
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},
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'\r' | '\n' => {
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match ctx.state {
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ParserState::WaitHole => {
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ctx.state = ParserState::ReadHole;
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},
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ParserState::ReadKey => {
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let token = token_str(ctx);
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let mut pass = false;
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if let Some(hole) = &mut ctx.currhole {
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let (name, ref mut keys) = hole;
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if !token.is_empty() {
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if let Some(key) = keys.last_mut() {
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key.push( token );
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}
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}
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if PASSHOLE.iter().any( |&s| s == name.to_lowercase() ) {
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pass = true;
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}
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}
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if pass == false {
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if let Some(lock) = &mut ctx.currlock {
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lock.holes.push( ctx.currhole.take().unwrap() );
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}
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}
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ctx.state = ParserState::ReadHole;
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},
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ParserState::ReadLock => {
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error(ctx, format!("error occur newline on {:?}", ctx.state));
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},
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ParserState::ReadHole => {
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if ctx.token.len() > 0 && ctx.token.iter().any( |c| *c != ' ' && *c != '\t' ) {
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error(ctx, format!("error occur newline on {:?}", ctx.state));
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}
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else {
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ctx.token.clear();
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}
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},
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ParserState::WaitPart => {
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ctx.state = ParserState::NeedPart;
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},
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_ => {},
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}
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if ch == '\n' {
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ctx.line += 1;
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}
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},
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'=' => {
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match ctx.state {
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ParserState::ReadHole => {
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ctx.state = ParserState::ReadKey;
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ctx.currhole = Some( (token_str(ctx), vec![Vec::new()]) );
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},
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ParserState::ReadLock => {
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ctx.token.push( ch );
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},
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ParserState::WaitPart => {},
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ParserState::NeedPart => {
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ctx.state = ParserState::WaitPart;
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},
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_ => error( ctx, format!("error occur = on {:?}", ctx.state) ),
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}
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},
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',' => {
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match ctx.state {
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ParserState::ReadKey => {
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if ctx.token.len() > 0 {
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let token = token_str(ctx);
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ctx.currhole.as_mut().map(
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|hole| {
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let (_name, ref mut keys) = hole;
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if !token.is_empty() {
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if let Some(key) = keys.last_mut() {
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key.push( token );
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}
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}
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true
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}
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);
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}
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},
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ParserState::ReadHole => {
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// 秘籍数据需要换行才能写完的情况
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let token = token_str(ctx);
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ctx.currlock.as_mut().map(
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|lock| {
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ctx.currhole = lock.holes.pop().map(
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|hole| {
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let (name, mut keys) = hole;
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if !token.is_empty() {
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if let Some(key) = keys.last_mut() {
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key.push( token );
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}
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}
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(name, keys)
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}
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);
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}
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);
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ctx.state = ParserState::ReadKey;
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}
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ParserState::ReadLock => {
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ctx.token.push( ch );
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},
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ParserState::WaitPart => {},
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ParserState::NeedPart => {
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ctx.state = ParserState::WaitPart;
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},
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_ => error( ctx, format!("error occur , on {:?}", ctx.state) ),
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}
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},
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';' => {
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match ctx.state {
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ParserState::ReadKey => {
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let token = token_str(ctx);
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ctx.currhole.as_mut().map(
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|hole| {
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let (_name, ref mut keys) = hole;
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if !token.is_empty() {
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if let Some(key) = keys.last_mut() {
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key.push( token );
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}
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}
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keys.push( Vec::new() );
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true
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}
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);
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},
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ParserState::ReadLock => {
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ctx.token.push( ch );
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},
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ParserState::ReadHole => {
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let token = token_str(ctx);
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ctx.currlock.as_mut().map(
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|lock| {
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ctx.currhole = lock.holes.pop().map(
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|hole| {
|
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let (name, mut keys) = hole;
|
|
if !token.is_empty() {
|
|
if let Some(key) = keys.last_mut() {
|
|
key.push( token );
|
|
}
|
|
}
|
|
keys.push( Vec::new() );
|
|
(name, keys)
|
|
}
|
|
);
|
|
}
|
|
);
|
|
ctx.state = ParserState::ReadKey;
|
|
},
|
|
ParserState::WaitPart => {},
|
|
ParserState::NeedPart => {
|
|
ctx.state = ParserState::WaitPart;
|
|
},
|
|
_ => error(ctx, format!("error occur ; on {:?}", ctx.state)),
|
|
}
|
|
},
|
|
' ' => {
|
|
match ctx.state {
|
|
ParserState::ReadLock | ParserState::ReadHole => {
|
|
ctx.token.push( ch );
|
|
},
|
|
ParserState::NeedPart => {
|
|
ctx.state = ParserState::WaitPart;
|
|
},
|
|
_ => {},
|
|
}
|
|
},
|
|
_ => {
|
|
match ctx.state {
|
|
ParserState::ReadLock | ParserState::ReadHole => {
|
|
ctx.token.push( ch );
|
|
},
|
|
ParserState::ReadKey => {
|
|
if String::from(HEX).contains(ch) == true {
|
|
ctx.token.push( ch );
|
|
}
|
|
else if let Some(hole) = &ctx.currhole {
|
|
let (name, _key) = hole;
|
|
if name == "text" {
|
|
ctx.token.push( ch );
|
|
}
|
|
}
|
|
else {
|
|
error(ctx, format!("error occur {} on {:?}", ch, ctx.state));
|
|
}
|
|
},
|
|
ParserState::WaitPart => {},
|
|
ParserState::NeedPart => {
|
|
ctx.state = ParserState::WaitPart;
|
|
},
|
|
_ => error(ctx, format!("error occur {} on {:?}", ch, ctx.state)),
|
|
}
|
|
},
|
|
}
|
|
}
|
|
|
|
fn done(ctx: &mut ParserCtx) {
|
|
match ctx.state {
|
|
ParserState::WaitPart | ParserState::NeedPart => {},
|
|
_ => error( ctx, format!("error occur eof on {:?}", ctx.state) ),
|
|
}
|
|
}
|
|
|
|
fn parse( data: String, serial: &String, order: &String ) -> Vec< (u32, Module) > {
|
|
let mut ret: Vec<(u32, Module)> = Vec::new();
|
|
let mut context = ParserCtx {
|
|
state: ParserState::WaitLock,
|
|
token: Vec::new(),
|
|
line: 1,
|
|
|
|
file: order,
|
|
code: {
|
|
let mut r:u32 = 0;
|
|
for v in serial.as_bytes().iter() {
|
|
let u:u32 = *v as u32;
|
|
r = u | r << 8;
|
|
}
|
|
r
|
|
},
|
|
|
|
locks: Vec::new(),
|
|
currlock: None,
|
|
currhole: None,
|
|
|
|
output: &mut ret,
|
|
};
|
|
for ch in data.chars() {
|
|
incr( ch, &mut context );
|
|
}
|
|
done( &mut context );
|
|
return ret;
|
|
}
|
|
|
|
fn loadlist() -> Vec<(String,String)> {
|
|
let mut retval: Vec<(String, String)> = Vec::new();
|
|
|
|
let file_content = fs::read_to_string("./serial.json")
|
|
.expect("Unable to read file");
|
|
|
|
let json_data: Value = serde_json::from_str(&file_content)
|
|
.expect("JSON was not well-formatted");
|
|
|
|
if let Value::Object(map) = json_data {
|
|
for (key, value) in map.iter() {
|
|
if let Value::String(serial) = value {
|
|
if serial != "????" {
|
|
retval.push( (key.to_string(), serial.to_string()) );
|
|
}
|
|
}
|
|
}
|
|
} else {
|
|
panic!("serial.json with invalid format.");
|
|
}
|
|
return retval;
|
|
}
|
|
|
|
fn transform<'a>( list: &'a Vec<(String, String)> ) -> Vec<(&'a String, Vec<(u32, Module)>)> {
|
|
let mut retval: Vec<(&String, Vec<(u32, Module)>)> = Vec::new();
|
|
for (order, serial) in list.iter() {
|
|
let file = format!("./gba/{}.u8", order);
|
|
let chtdata = fs::read_to_string(file).unwrap_or("".to_string());
|
|
if chtdata.len() > 0 {
|
|
let cheats = parse( chtdata.to_string(), serial, order );
|
|
retval.push( (serial, cheats) );
|
|
}
|
|
else {
|
|
// println!("bad cheat: {}", file);
|
|
retval.push( (serial, vec![]) );
|
|
}
|
|
}
|
|
return retval;
|
|
}
|
|
|
|
fn format<'a>( mut cheats: Vec<(&'a String, Vec<(u32, Module)>)> ) -> Vec<u8> {
|
|
cheats.sort_by( |a, b| a.0.cmp(&b.0) );
|
|
println!("valid rom has {}", cheats.len());
|
|
|
|
let (sers, offs, chtc, maxl, _) = {
|
|
let mut ret: (Vec<u8>, Vec<u16>, usize, usize, String) = (vec![], vec![], 0, 0, "".to_string());
|
|
let mut last: usize = 0;
|
|
for game in cheats.iter() {
|
|
let (serial, cheat) = game;
|
|
let val = serial.get(0..3).expect("not valid serial");
|
|
if ret.4.ne(val) {
|
|
if ret.1.len() > 0 && ret.2 - last > ret.3 {
|
|
ret.3 = ret.2 - last;
|
|
}
|
|
ret.0.extend( val.as_bytes() );
|
|
ret.1.push( ret.2.try_into().unwrap() );
|
|
last = ret.2;
|
|
ret.4 = val.to_string();
|
|
}
|
|
ret.2 = ret.2 + cheat.len();
|
|
}
|
|
if ret.1.len() > 0 {
|
|
if ret.2 - last > ret.3 {
|
|
ret.3 = ret.2 - last;
|
|
}
|
|
ret.1.push( ret.2.try_into().unwrap() );
|
|
}
|
|
ret
|
|
};
|
|
let (cheats, expanded, _) = {
|
|
let mut ret: (Vec<u32>, Vec<u8>, usize) = (vec![], vec![], align(8 + sers.len() + offs.len()*2 + chtc * 8, 32));
|
|
for game in cheats.iter() {
|
|
let (serial, cheat) = game;
|
|
let val = serial.chars().nth(3).expect("invalid serial");
|
|
for (id, bin) in cheat.iter() {
|
|
let off: u32 = (ret.2 + ret.1.len()).try_into().unwrap();
|
|
ret.0.push( (val as u32) | (off << 3) );
|
|
ret.0.push( *id );
|
|
ret.1.extend( bin );
|
|
}
|
|
}
|
|
ret
|
|
};
|
|
println!("name: {} cheats: {} maxl: {}", sers.len(), chtc, maxl);
|
|
|
|
let serialbase = 8;
|
|
let offsetbase = serialbase + sers.len();
|
|
let cheatbase = offsetbase + offs.len() * 2;
|
|
let expandbase = align( cheatbase + cheats.len() * 4, 32 );
|
|
let total = expandbase + expanded.len();
|
|
|
|
let mut output: Vec<u8> = vec![0u8; total];
|
|
output[0..4].copy_from_slice(&['A' as u8, 'C' as u8, 'L' as u8, 1]);
|
|
LittleEndian::write_u16(&mut output[4..6], (sers.len() / 3).try_into().unwrap());
|
|
LittleEndian::write_u16(&mut output[6..8], maxl.try_into().unwrap());
|
|
|
|
output[serialbase..offsetbase].copy_from_slice( &sers );
|
|
LittleEndian::write_u16_into(&offs, &mut output[offsetbase..cheatbase]);
|
|
LittleEndian::write_u32_into(&cheats, &mut output[cheatbase..cheatbase+cheats.len()*4]);
|
|
output[expandbase..expandbase+expanded.len()].copy_from_slice( &expanded );
|
|
|
|
return output;
|
|
}
|
|
|
|
fn main() {
|
|
let list = loadlist();
|
|
let roms = {
|
|
let ret = transform( &list );
|
|
println!("all rom has {}", ret.len());
|
|
let mut idx: BTreeMap<&String, Vec<(u32, Module)>> = BTreeMap::new();
|
|
for (serial, cheat) in ret.into_iter() {
|
|
if cheat.len() == 0 {
|
|
continue;
|
|
}
|
|
|
|
idx.entry(serial).or_insert_with(Vec::new).extend( cheat );
|
|
}
|
|
idx.into_iter().collect()
|
|
};
|
|
let content = format( roms );
|
|
let _ = fs::write("gba.acl", content);
|
|
}
|