lisp.rs 16 KB

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  1. #![allow(non_snake_case)]
  2. use bls12_381::Scalar;
  3. use sapvi::bls_extensions::BlsStringConversion;
  4. use sapvi::serial::{Decodable, Encodable};
  5. use simplelog::*;
  6. use std::fs;
  7. use std::fs::File;
  8. use std::rc::Rc;
  9. use std::time::Instant;
  10. //use std::collections::HashMap;
  11. use fnv::FnvHashMap;
  12. use itertools::Itertools;
  13. use sapvi::vm::{
  14. AllocType, ConstraintInstruction, CryptoOperation, VariableIndex, VariableRef, ZKVirtualMachine,
  15. };
  16. #[macro_use]
  17. extern crate clap;
  18. #[macro_use]
  19. extern crate lazy_static;
  20. extern crate fnv;
  21. extern crate itertools;
  22. extern crate regex;
  23. #[macro_use]
  24. mod types;
  25. use crate::types::MalErr::{ErrMalVal, ErrString};
  26. use crate::types::MalVal::{
  27. Bool, Func, Hash, List, MalFunc, Nil, Params, Private, Public, Str,
  28. Sym, Vector, Zk,
  29. };
  30. use crate::types::ZKCircuit;
  31. use crate::types::{error, format_error, MalArgs, MalErr, MalRet, MalVal};
  32. mod env;
  33. mod printer;
  34. mod reader;
  35. use crate::env::{env_bind, env_find, env_get, env_new, env_set, env_sets, Env};
  36. #[macro_use]
  37. mod core;
  38. // read
  39. fn read(str: &str) -> MalRet {
  40. reader::read_str(str.to_string())
  41. }
  42. // eval
  43. fn qq_iter(elts: &MalArgs) -> MalVal {
  44. let mut acc = list![];
  45. for elt in elts.iter().rev() {
  46. if let List(v, _) = elt {
  47. if v.len() == 2 {
  48. if let Sym(ref s) = v[0] {
  49. if s == "splice-unquote" {
  50. acc = list![Sym("concat".to_string()), v[1].clone(), acc];
  51. continue;
  52. }
  53. }
  54. }
  55. }
  56. acc = list![Sym("cons".to_string()), quasiquote(&elt), acc];
  57. }
  58. return acc;
  59. }
  60. fn quasiquote(ast: &MalVal) -> MalVal {
  61. match ast {
  62. List(v, _) => {
  63. if v.len() == 2 {
  64. if let Sym(ref s) = v[0] {
  65. if s == "unquote" {
  66. return v[1].clone();
  67. }
  68. }
  69. }
  70. return qq_iter(&v);
  71. }
  72. Vector(v, _) => return list![Sym("vec".to_string()), qq_iter(&v)],
  73. Hash(_, _) | Sym(_) => return list![Sym("quote".to_string()), ast.clone()],
  74. _ => ast.clone(),
  75. }
  76. }
  77. fn is_macro_call(ast: &MalVal, env: &Env) -> Option<(MalVal, MalArgs)> {
  78. match ast {
  79. List(v, _) => match v[0] {
  80. Sym(ref s) => match env_find(env, s) {
  81. Some(e) => match env_get(&e, &v[0]) {
  82. Ok(f @ MalFunc { is_macro: true, .. }) => Some((f, v[1..].to_vec())),
  83. _ => None,
  84. },
  85. _ => None,
  86. },
  87. _ => None,
  88. },
  89. _ => None,
  90. }
  91. }
  92. fn macroexpand(mut ast: MalVal, env: &Env) -> (bool, MalRet) {
  93. let mut was_expanded = false;
  94. while let Some((mf, args)) = is_macro_call(&ast, env) {
  95. //println!("macroexpand 1: {:?}", ast);
  96. ast = match mf.apply(args) {
  97. Err(e) => return (false, Err(e)),
  98. Ok(a) => a,
  99. };
  100. //println!("macroexpand 2: {:?}", ast);
  101. was_expanded = true;
  102. }
  103. ((was_expanded, Ok(ast)))
  104. }
  105. fn eval_ast(ast: &MalVal, env: &Env) -> MalRet {
  106. match ast {
  107. Sym(_) => Ok(env_get(&env, &ast)?),
  108. List(v, _) => {
  109. let mut lst: MalArgs = vec![];
  110. for a in v.iter() {
  111. lst.push(eval(a.clone(), env.clone())?)
  112. }
  113. Ok(list!(lst))
  114. }
  115. Vector(v, _) => {
  116. let mut lst: MalArgs = vec![];
  117. for a in v.iter() {
  118. lst.push(eval(a.clone(), env.clone())?)
  119. }
  120. Ok(vector!(lst))
  121. }
  122. Hash(hm, _) => {
  123. let mut new_hm: FnvHashMap<String, MalVal> = FnvHashMap::default();
  124. for (k, v) in hm.iter() {
  125. new_hm.insert(k.to_string(), eval(v.clone(), env.clone())?);
  126. }
  127. Ok(Hash(Rc::new(new_hm), Rc::new(Nil)))
  128. }
  129. _ => Ok(ast.clone()),
  130. }
  131. }
  132. fn eval(mut ast: MalVal, mut env: Env) -> MalRet {
  133. let ret: MalRet;
  134. 'tco: loop {
  135. ret = match ast.clone() {
  136. List(l, _) => {
  137. if l.len() == 0 {
  138. return Ok(ast);
  139. }
  140. match macroexpand(ast.clone(), &env) {
  141. (true, Ok(new_ast)) => {
  142. ast = new_ast;
  143. continue 'tco;
  144. }
  145. (_, Err(e)) => return Err(e),
  146. _ => (),
  147. }
  148. if l.len() == 0 {
  149. return Ok(ast);
  150. }
  151. let a0 = &l[0];
  152. match a0 {
  153. Sym(ref a0sym) if a0sym == "def!" => {
  154. env_set(&env, l[1].clone(), eval(l[2].clone(), env.clone())?)
  155. }
  156. Sym(ref a0sym) if a0sym == "let*" => {
  157. env = env_new(Some(env.clone()));
  158. let (a1, a2) = (l[1].clone(), l[2].clone());
  159. match a1 {
  160. List(ref binds, _) | Vector(ref binds, _) => {
  161. for (b, e) in binds.iter().tuples() {
  162. match b {
  163. Sym(_) => {
  164. let _ = env_set(
  165. &env,
  166. b.clone(),
  167. eval(e.clone(), env.clone())?,
  168. );
  169. }
  170. _ => {
  171. return error("let* with non-Sym binding");
  172. }
  173. }
  174. }
  175. }
  176. _ => {
  177. return error("let* with non-List bindings");
  178. }
  179. };
  180. ast = a2;
  181. continue 'tco;
  182. }
  183. Sym(ref a0sym) if a0sym == "quote" => Ok(l[1].clone()),
  184. Sym(ref a0sym) if a0sym == "quasiquoteexpand" => Ok(quasiquote(&l[1])),
  185. Sym(ref a0sym) if a0sym == "quasiquote" => {
  186. ast = quasiquote(&l[1]);
  187. continue 'tco;
  188. }
  189. Sym(ref a0sym) if a0sym == "defmacro!" => {
  190. let (a1, a2) = (l[1].clone(), l[2].clone());
  191. let r = eval(a2, env.clone())?;
  192. match r {
  193. MalFunc {
  194. eval,
  195. ast,
  196. env,
  197. params,
  198. ..
  199. } => Ok(env_set(
  200. &env,
  201. a1.clone(),
  202. MalFunc {
  203. eval: eval,
  204. ast: ast.clone(),
  205. env: env.clone(),
  206. params: params.clone(),
  207. is_macro: true,
  208. meta: Rc::new(Nil),
  209. },
  210. )?),
  211. _ => error("set_macro on non-function"),
  212. }
  213. }
  214. Sym(ref a0sym) if a0sym == "macroexpand" => {
  215. match macroexpand(l[1].clone(), &env) {
  216. (_, Ok(new_ast)) => Ok(new_ast),
  217. (_, e) => return e,
  218. }
  219. }
  220. Sym(ref a0sym) if a0sym == "try*" => match eval(l[1].clone(), env.clone()) {
  221. Err(ref e) if l.len() >= 3 => {
  222. let exc = match e {
  223. ErrMalVal(mv) => mv.clone(),
  224. ErrString(s) => Str(s.to_string()),
  225. };
  226. match l[2].clone() {
  227. List(c, _) => {
  228. let catch_env = env_bind(
  229. Some(env.clone()),
  230. list!(vec![c[1].clone()]),
  231. vec![exc],
  232. )?;
  233. eval(c[2].clone(), catch_env)
  234. }
  235. _ => error("invalid catch block"),
  236. }
  237. }
  238. res => res,
  239. },
  240. Sym(ref a0sym) if a0sym == "do" => {
  241. match eval_ast(&list!(l[1..l.len() - 1].to_vec()), &env)? {
  242. List(_, _) => {
  243. ast = l.last().unwrap_or(&Nil).clone();
  244. continue 'tco;
  245. }
  246. _ => error("invalid do form"),
  247. }
  248. }
  249. Sym(ref a0sym) if a0sym == "if" => {
  250. let cond = eval(l[1].clone(), env.clone())?;
  251. match cond {
  252. Bool(false) | Nil if l.len() >= 4 => {
  253. ast = l[3].clone();
  254. continue 'tco;
  255. }
  256. Bool(false) | Nil => Ok(Nil),
  257. _ if l.len() >= 3 => {
  258. ast = l[2].clone();
  259. continue 'tco;
  260. }
  261. _ => Ok(Nil),
  262. }
  263. }
  264. //Sym(ref a0sym) if a0sym == "setup" => {
  265. //Sym(ref a0sym) if a0sym == "prove" => {
  266. //Sym(ref a0sym) if a0sym == "verify" => {
  267. Sym(ref a0sym) if a0sym == "enforce" => {
  268. let (a1, a2) = (l[1].clone(), l[2].clone());
  269. let value = eval_ast(&a2, &env)?;
  270. match value {
  271. List(ref el, _) => {
  272. //let val = zkcons_eval(el.to_vec(), &a1, &env)?;
  273. //val.clone();
  274. println!("{:?}", el.to_vec());
  275. }
  276. _ => println!("invalid format"),
  277. }
  278. // println!("3 {:?}", eval(a1.clone(), env.clone()));
  279. env_set(&env, a1.clone(), eval(a1.clone(), env.clone())?);
  280. eval(a1.clone(), env.clone())
  281. }
  282. Sym(ref a0sym) if a0sym == "defzk!" => {
  283. // private, public and constrains
  284. //let (a1, a2, a3) = (l[1].clone(), l[2].clone(), l[3].clone());
  285. let (a1) = (l[1].clone());
  286. let circuit = zk_circuit_create(&a1, &env);
  287. let val = types::MalVal::Zk(circuit.clone());
  288. env_set(&env, a1.clone(), val.clone());
  289. Ok(val.clone())
  290. }
  291. Sym(ref a0sym) if a0sym == "fn*" => {
  292. let (a1, a2) = (l[1].clone(), l[2].clone());
  293. Ok(MalFunc {
  294. eval: eval,
  295. ast: Rc::new(a2),
  296. env: env,
  297. params: Rc::new(a1),
  298. is_macro: false,
  299. meta: Rc::new(Nil),
  300. })
  301. }
  302. Sym(ref a0sym) if a0sym == "eval" => {
  303. ast = eval(l[1].clone(), env.clone())?;
  304. while let Some(ref e) = env.clone().outer {
  305. env = e.clone();
  306. }
  307. continue 'tco;
  308. }
  309. _ => match eval_ast(&ast, &env)? {
  310. List(ref el, _) => {
  311. let ref f = el[0].clone();
  312. let args = el[1..].to_vec();
  313. match f {
  314. Func(_, _) => f.apply(args),
  315. MalFunc {
  316. ast: mast,
  317. env: menv,
  318. params,
  319. ..
  320. } => {
  321. let a = &**mast;
  322. let p = &**params;
  323. env = env_bind(Some(menv.clone()), p.clone(), args)?;
  324. ast = a.clone();
  325. continue 'tco;
  326. }
  327. _ => {
  328. Ok(Nil)
  329. //error("call non-function")
  330. }
  331. }
  332. }
  333. _ => error("expected a list"),
  334. },
  335. }
  336. }
  337. _ => eval_ast(&ast, &env),
  338. };
  339. break;
  340. } // end 'tco loop
  341. ret
  342. }
  343. fn zk_circuit_create(a1: &MalVal, env: &Env) -> ZKCircuit {
  344. let zk_circuit = ZKCircuit {
  345. name: a1.pr_str(true),
  346. constraints: Vec::new(),
  347. private: Vec::new(),
  348. public: Vec::new(),
  349. params: Vec::new(),
  350. verifying_key: Vec::new(),
  351. };
  352. zk_circuit
  353. }
  354. // print
  355. fn print(ast: &MalVal) -> String {
  356. ast.pr_str(true)
  357. }
  358. fn rep(str: &str, env: &Env) -> Result<String, MalErr> {
  359. let ast = read(str)?;
  360. let exp = eval(ast, env.clone())?;
  361. Ok(print(&exp))
  362. }
  363. fn main() -> Result<(), ()> {
  364. let matches = clap_app!(zklisp =>
  365. (version: "0.1.0")
  366. (author: "Roberto Santacroce Martins <miles.chet@gmail.com>")
  367. (about: "A Lisp Interpreter for Zero Knowledge Virtual Machine")
  368. (@subcommand load =>
  369. (about: "Load the file into the interpreter")
  370. (@arg FILE: +required "Lisp Contract filename")
  371. )
  372. )
  373. .get_matches();
  374. CombinedLogger::init(vec![TermLogger::new(
  375. LevelFilter::Debug,
  376. Config::default(),
  377. TerminalMode::Mixed,
  378. )
  379. .unwrap()])
  380. .unwrap();
  381. match matches.subcommand() {
  382. Some(("load", matches)) => {
  383. let file: String = matches.value_of("FILE").unwrap().parse().unwrap();
  384. repl_load(file);
  385. }
  386. _ => {
  387. eprintln!("error: Invalid subcommand invoked");
  388. std::process::exit(-1);
  389. }
  390. }
  391. Ok(())
  392. }
  393. fn repl_load(file: String) -> Result<(), ()> {
  394. let repl_env = env_new(None);
  395. for (k, v) in core::ns() {
  396. env_sets(&repl_env, k, v);
  397. }
  398. let _ = rep("(def! not (fn* (a) (if a false true)))", &repl_env);
  399. let _ = rep(
  400. "(def! load-file (fn* (f) (eval (read-string (str \"(do \" (slurp f) \"\nnil)\")))))",
  401. &repl_env,
  402. );
  403. let _ = rep("(defmacro! cond (fn* (& xs) (if (> (count xs) 0) (list 'if (first xs) (if (> (count xs) 1) (nth xs 1) (throw \"odd number of forms to cond\")) (cons 'cond (rest (rest xs)))))))", &repl_env);
  404. match rep(&format!("(load-file \"{}\")", file), &repl_env) {
  405. Ok(_) => std::process::exit(0),
  406. Err(e) => {
  407. println!("Error: {}", format_error(e));
  408. std::process::exit(1);
  409. }
  410. }
  411. Ok(())
  412. }