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@@ -1,12 +1,7 @@
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-use bellman::{
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- gadgets::{
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- Assignment,
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- },
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- groth16, Circuit, ConstraintSystem, SynthesisError,
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-};
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-use std::ops::{Add, AddAssign, MulAssign, SubAssign};
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-use std::cell::RefCell;
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+use bellman::{gadgets::Assignment, groth16, Circuit, ConstraintSystem, SynthesisError};
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use sapvi::bls_extensions::BlsStringConversion;
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+use std::cell::RefCell;
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+use std::ops::{Add, AddAssign, MulAssign, SubAssign};
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use std::rc::Rc;
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//use std::collections::HashMap;
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use fnv::FnvHashMap;
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@@ -49,7 +44,7 @@ impl Circuit<bls12_381::Scalar> for LispCircuit {
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println!("Allocations\n");
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for (k, v) in &self.allocs {
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- // match str
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+ // match str
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match v {
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MalVal::ZKScalar(val) => {
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let var = cs.alloc(|| "alloc", || Ok(*val))?;
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@@ -60,18 +55,28 @@ impl Circuit<bls12_381::Scalar> for LispCircuit {
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let var = cs.alloc(|| "alloc", || Ok(val_scalar))?;
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variables.insert(k.to_string(), var);
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}
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- _ => { println!("not allocated k {:?} v {:?}", k, v); }
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+ _ => {
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+ println!("not allocated k {:?} v {:?}", k, v);
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+ }
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}
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}
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println!("Allocations Input\n");
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for (k, v) in &self.alloc_inputs {
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- if let MalVal::ZKScalar(val) = v {
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- println!("val {:?}", val);
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- let var = cs.alloc_input(|| "alloc", || Ok(*val))?;
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- variables.insert(k.to_string(), var);
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- } else {
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- println!("not allocated k {:?} v {:?}", k, v);
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+ match v {
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+ MalVal::ZKScalar(val) => {
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+ println!("val {:?}", val);
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+ let var = cs.alloc_input(|| "alloc", || Ok(*val))?;
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+ variables.insert(k.to_string(), var);
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+ }
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+ MalVal::Str(val) => {
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+ let val_scalar = bls12_381::Scalar::from_string(&*val);
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+ let var = cs.alloc(|| "alloc", || Ok(val_scalar))?;
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+ variables.insert(k.to_string(), var);
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+ }
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+ _ => {
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+ println!("not allocated k {:?} v {:?}", k, v);
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+ }
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}
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}
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@@ -94,11 +99,11 @@ impl Circuit<bls12_381::Scalar> for LispCircuit {
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} else if a == "scalar::one::neg" {
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left = left + (coeff.neg(), val_b);
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} else {
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- if let Some(value) = self.params.get(a) {
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- if let MalVal::ZKScalar(val) = value {
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- left = left + (*val, val_b);
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+ if let Some(value) = self.params.get(a) {
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+ if let MalVal::ZKScalar(val) = value {
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+ left = left + (*val, val_b);
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+ }
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}
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- }
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}
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}
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@@ -113,7 +118,7 @@ impl Circuit<bls12_381::Scalar> for LispCircuit {
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right = right + (coeff, val_b);
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} else if a == "scalar::one::neg" {
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right = right + (coeff.neg(), val_b);
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- }
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+ }
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}
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for values in alloc_value.output.iter() {
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@@ -126,7 +131,7 @@ impl Circuit<bls12_381::Scalar> for LispCircuit {
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output = output + (coeff, val_b);
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} else if a == "scalar::one::neg" {
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output = output + (coeff.neg(), val_b);
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- }
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+ }
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}
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cs.enforce(
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