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@ -6,9 +6,11 @@ macro_rules! make_uint { |
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#[doc = $native_doc_name]
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#[doc = "`type."]
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pub mod $mod_name {
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use ark_ff::{Field, FpParameters, PrimeField};
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use ark_ff::{Field, FpParameters, One, PrimeField, Zero};
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use core::borrow::Borrow;
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use core::convert::TryFrom;
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use num_bigint::BigUint;
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use num_traits::cast::ToPrimitive;
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use ark_relations::r1cs::{
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ConstraintSystemRef, LinearCombination, Namespace, SynthesisError, Variable,
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@ -183,6 +185,9 @@ macro_rules! make_uint { |
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// in the scalar field
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assert!(F::Params::MODULUS_BITS >= 2 * $size);
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// Support up to 128
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assert!($size <= 128);
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assert!(operands.len() >= 1);
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assert!($size * operands.len() <= F::Params::MODULUS_BITS as usize);
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@ -192,10 +197,10 @@ macro_rules! make_uint { |
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// Compute the maximum value of the sum so we allocate enough bits for
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// the result
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let mut max_value = (operands.len() as u128) * u128::from($native::max_value());
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let mut max_value = BigUint::from($native::max_value()) * BigUint::from(operands.len());
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// Keep track of the resulting value
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let mut result_value = Some(0u128);
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let mut result_value = Some(BigUint::zero());
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// This is a linear combination that we will enforce to be "zero"
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let mut lc = LinearCombination::zero();
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@ -207,7 +212,7 @@ macro_rules! make_uint { |
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// Accumulate the value
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match op.value {
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Some(val) => {
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result_value.as_mut().map(|v| *v += u128::from(val));
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result_value.as_mut().map(|v| *v += BigUint::from(val));
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}
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None => {
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@ -246,7 +251,12 @@ macro_rules! make_uint { |
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}
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// The value of the actual result is modulo 2^$size
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let modular_value = result_value.map(|v| v as $native);
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let modular_value = result_value.clone().map(|v|
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{
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let modulus = BigUint::from(1u64) << ($size as u32);
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(v % modulus).to_u128().unwrap() as $native
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}
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);
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if all_constants && modular_value.is_some() {
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// We can just return a constant, rather than
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@ -262,11 +272,9 @@ macro_rules! make_uint { |
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// Allocate each bit_gadget of the result
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let mut coeff = F::one();
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let mut i = 0;
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while max_value != 0 {
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while max_value != BigUint::zero() {
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// Allocate the bit_gadget
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let b = AllocatedBit::new_witness(cs.clone(), || {
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result_value.map(|v| (v >> i) & 1 == 1).get()
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})?;
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let b = AllocatedBit::new_witness(cs.clone(), || result_value.clone().map(|v| (v >> i) & BigUint::one() == BigUint::one()).get())?;
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// Subtract this bit_gadget from the linear combination to ensure the sums
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// balance out
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@ -384,7 +392,7 @@ macro_rules! make_uint { |
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mod test {
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use super::$name;
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use crate::{bits::boolean::Boolean, prelude::*, Vec};
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use ark_test_curves::bls12_381::Fr;
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use ark_test_curves::mnt4_753::Fr;
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use ark_relations::r1cs::{ConstraintSystem, SynthesisError};
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use rand::{Rng, SeedableRng};
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use rand_xorshift::XorShiftRng;
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@ -517,7 +525,6 @@ macro_rules! make_uint { |
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let r = $name::addmany(&[r, c_bit, d_bit]).unwrap();
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assert!(cs.is_satisfied().unwrap());
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assert!(r.value == Some(expected));
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for b in r.bits.iter() {
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