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@@ -34,7 +34,7 @@ extern crate regex;
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#[macro_use]
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mod types;
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use crate::types::MalErr::{ErrMalVal, ErrString};
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-use crate::types::MalVal::{Bool, Func, Hash, List, MalFunc, Nil, Str, Sym, Vector, Enforce};
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+use crate::types::MalVal::{Bool, Enforce, Func, Hash, List, MalFunc, Nil, Str, Sym, Vector};
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use crate::types::{error, format_error, MalArgs, MalErr, MalRet, MalVal};
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mod env;
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mod printer;
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@@ -302,8 +302,8 @@ fn eval(mut ast: MalVal, mut env: Env) -> MalRet {
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Sym(ref a0sym) if a0sym == "setup" => {
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let a1 = l[1].clone();
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// todo
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- let _pvk = setup(a1.clone(), env.clone())?;
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ast = eval(a1.clone(), env.clone())?;
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+ let _pvk = setup(a1.clone(), env.clone())?;
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continue 'tco;
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}
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Sym(ref a0sym) if a0sym == "prove" => {
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@@ -315,38 +315,34 @@ fn eval(mut ast: MalVal, mut env: Env) -> MalRet {
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let a1 = l[1].clone();
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let value = eval(l[2].clone(), env.clone())?;
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let result = eval(value.clone(), env.clone())?;
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- // let symbol = MalVal::Sym(a1.pr_str(false));
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- // env_set(&env, Sym(a1.pr_str(false)), result.clone());
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- if let Hash(allocs, _) = get_allocations(&env, "AllocationsInput")? {
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- let mut new_hm: FnvHashMap<String, MalVal> = FnvHashMap::default();
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- for (k, v) in allocs.iter() {
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- new_hm.insert(k.to_string(), eval(v.clone(), env.clone())?);
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- }
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- new_hm.insert(a1.pr_str(false), result);
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- env_set(
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- &env,
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- Sym("AllocationsInput".to_string()),
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- Hash(Rc::new(new_hm), Rc::new(Nil)),
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- )?;
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- };
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+ let allocs = get_allocations(&env, "AllocationsInput");
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+ let mut new_hm: FnvHashMap<String, MalVal> = FnvHashMap::default();
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+ for (k, v) in allocs.iter() {
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+ new_hm.insert(k.to_string(), eval(v.clone(), env.clone())?);
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+ }
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+ new_hm.insert(a1.pr_str(false), result);
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+ env_set(
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+ &env,
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+ Sym("AllocationsInput".to_string()),
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+ Hash(Rc::new(new_hm), Rc::new(Nil)),
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+ )?;
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Ok(Nil)
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}
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Sym(ref a0sym) if a0sym == "alloc" => {
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let a1 = l[1].clone();
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let value = eval(l[2].clone(), env.clone())?;
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let result = eval(value.clone(), env.clone())?;
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- if let Hash(allocs, _) = get_allocations(&env, "Allocations")? {
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- let mut new_hm: FnvHashMap<String, MalVal> = FnvHashMap::default();
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- for (k, v) in allocs.iter() {
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- new_hm.insert(k.to_string(), eval(v.clone(), env.clone())?);
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- }
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- new_hm.insert(a1.pr_str(false), result);
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- env_set(
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- &env,
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- Sym("Allocations".to_string()),
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- Hash(Rc::new(new_hm), Rc::new(Nil)),
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- )?;
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- };
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+ let allocs = get_allocations(&env, "Allocations");
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+ let mut new_hm: FnvHashMap<String, MalVal> = FnvHashMap::default();
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+ for (k, v) in allocs.iter() {
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+ new_hm.insert(k.to_string(), eval(v.clone(), env.clone())?);
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+ }
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+ new_hm.insert(a1.pr_str(false), result);
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+ env_set(
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+ &env,
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+ Sym("Allocations".to_string()),
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+ Hash(Rc::new(new_hm), Rc::new(Nil)),
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+ )?;
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Ok(Nil)
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}
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//Sym(ref a0sym) if a0sym == "verify" => {
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@@ -417,34 +413,22 @@ fn eval(mut ast: MalVal, mut env: Env) -> MalRet {
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output: out_vec,
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};
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let mut new_vec: Vec<EnforceAllocation> = vec![enforce];
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- match get_enforce_allocs(&env)? {
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- Vector(v, _) => {
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- for value in v.iter() {
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- println!("VALUES {:?} \n", value);
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- match value {
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- Enforce(v) => {
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- println!("{:?}", v);
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- }
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- _ => {}
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- };
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- }
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- }
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- v => {
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- println!("something wrong. {:?}", v)
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- }
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- };
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+ for value in get_enforce_allocs(&env).iter() {
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+ println!("found {:?}", value);
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+ }
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env_set(
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&env,
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Sym("AllocationsEnforce".to_string()),
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vector![vec![Enforce(Rc::new(new_vec))]],
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);
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- println!("\n\nallocations {:?}", get_allocations(&env, "Allocations"));
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- println!(
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- "\n\nallocations input {:?}",
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- get_allocations(&env, "AllocationsInput")
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- );
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- println!("\n\nallocations enforce {:?}", get_enforce_allocs(&env));
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-
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+ /*
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+ println!("\n\nallocations {:?}", get_allocations(&env, "Allocations"));
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+ println!(
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+ "\n\nallocations input {:?}",
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+ get_allocations(&env, "AllocationsInput")
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+ );
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+ println!("\n\nallocations enforce {:?}", get_enforce_allocs(&env));
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+ */
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Ok(vector![vec![]])
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}
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_ => match eval_ast(&ast, &env)? {
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@@ -485,27 +469,40 @@ fn eval(mut ast: MalVal, mut env: Env) -> MalRet {
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ret
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}
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-pub fn get_enforce_allocs(env: &Env) -> MalRet {
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- let found = match env_find(env, "AllocationsEnforce") {
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+pub fn get_enforce_allocs(env: &Env) -> Vec<EnforceAllocation> {
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+ // todo need some cleanup
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+ match env_find(env, "AllocationsEnforce") {
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Some(e) => match env_get(&e, &Sym("AllocationsEnforce".to_string())) {
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Ok(f) => {
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- println!("Found {:?}", f);
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- Ok(f)
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+ if let Vector(val, _) = f {
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+ if let Enforce(ret) = &val[0] {
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+ ret.to_vec()
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+ } else {
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+ vec![]
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+ }
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+ } else {
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+ vec![]
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+ }
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}
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- _ => Ok(vector![vec![]]),
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+ _ => vec![],
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},
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- _ => Ok(vector![vec![]]),
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- };
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- found
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+ _ => vec![],
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+ }
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}
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-pub fn get_allocations(env: &Env, key: &str) -> MalRet {
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- let alloc_hm: FnvHashMap<String, MalVal> = FnvHashMap::default();
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+pub fn get_allocations(env: &Env, key: &str) -> Rc<FnvHashMap<String, MalVal>> {
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+ let alloc_hm: Rc<FnvHashMap<String, MalVal>> = Rc::new(FnvHashMap::default());
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match env_find(env, key) {
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Some(e) => match env_get(&e, &Sym(key.to_string())) {
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- Ok(f) => Ok(f),
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- _ => Ok(Hash(Rc::new(alloc_hm), Rc::new(Nil))),
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+ Ok(f) => {
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+ if let Hash(allocs, _) = f {
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+ allocs
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+ } else {
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+ alloc_hm
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+ }
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+ }
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+ _ => alloc_hm,
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},
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- _ => Ok(Hash(Rc::new(alloc_hm), Rc::new(Nil))),
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+ _ => alloc_hm,
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}
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}
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@@ -513,8 +510,9 @@ pub fn setup(_ast: MalVal, env: Env) -> Result<PreparedVerifyingKey<Bls12>, MalE
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let start = Instant::now();
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// Create parameters for our circuit. In a production deployment these would
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// be generated securely using a multiparty computation.
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-
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- // get all allocs from env
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+ // let allocs_input = get_allocations(&env, "AllocationsInput").to_vec();
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+ // let allocs = get_allocations(&env, "Allocations").to_vec();
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+ // let enforce_allocs = get_enforce_allocs(&env).unwrap().to_vec();
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let c = LispCircuit {
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params: vec![],
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