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@ -7,13 +7,14 @@ use crate::{ |
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prelude::*,
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Assignment, Vec,
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};
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use core::borrow::Borrow;
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/// Represents an interpretation of 64 `Boolean` objects as an
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/// unsigned integer.
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#[derive(Clone, Debug)]
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pub struct UInt64 {
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// Least significant bit_gadget first
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bits: Vec<Boolean>,
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bits: Vec<Boolean>,
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value: Option<u64>,
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}
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@ -40,7 +41,7 @@ impl UInt64 { |
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}
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/// Allocate a `UInt64` in the constraint system
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pub fn alloc<ConstraintF, CS>(mut cs: CS, value: Option<u64>) -> Result<Self, SynthesisError>
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pub fn _alloc<ConstraintF, CS>(mut cs: CS, value: Option<u64>) -> Result<Self, SynthesisError>
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where
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ConstraintF: Field,
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CS: ConstraintSystem<ConstraintF>,
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@ -55,7 +56,7 @@ impl UInt64 { |
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}
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v
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},
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}
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None => vec![None; 64],
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};
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@ -94,19 +95,19 @@ impl UInt64 { |
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if b {
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value.as_mut().map(|v| *v |= 1);
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}
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},
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}
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&Boolean::Is(ref b) => match b.get_value() {
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Some(true) => {
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value.as_mut().map(|v| *v |= 1);
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},
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Some(false) => {},
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}
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Some(false) => {}
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None => value = None,
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},
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&Boolean::Not(ref b) => match b.get_value() {
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Some(false) => {
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value.as_mut().map(|v| *v |= 1);
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},
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Some(true) => {},
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}
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Some(true) => {}
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None => value = None,
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},
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}
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@ -128,7 +129,7 @@ impl UInt64 { |
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.collect();
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UInt64 {
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bits: new_bits,
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bits: new_bits,
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value: self.value.map(|v| v.rotate_right(by as u32)),
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}
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}
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@ -193,12 +194,12 @@ impl UInt64 { |
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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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},
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}
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None => {
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// If any of our operands have unknown value, we won't
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// know the value of the result
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result_value = None;
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},
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}
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}
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// Iterate over each bit_gadget of the operand and add the operand to
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@ -211,18 +212,18 @@ impl UInt64 { |
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// Add coeff * bit_gadget
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lc += (coeff, bit.get_variable());
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},
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}
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Boolean::Not(ref bit) => {
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all_constants = false;
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// Add coeff * (1 - bit_gadget) = coeff * ONE - coeff * bit_gadget
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lc = lc + (coeff, CS::one()) - (coeff, bit.get_variable());
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},
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}
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Boolean::Constant(bit) => {
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if bit {
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lc += (coeff, CS::one());
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}
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},
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}
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}
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coeff.double_in_place();
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@ -269,12 +270,39 @@ impl UInt64 { |
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result_bits.truncate(64);
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Ok(UInt64 {
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bits: result_bits,
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bits: result_bits,
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value: modular_value,
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})
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}
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}
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impl<ConstraintF: Field> AllocGadget<u64, ConstraintF> for UInt64 {
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fn alloc<F, T, CS: ConstraintSystem<ConstraintF>>(
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mut cs: CS,
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value_gen: F,
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) -> Result<Self, SynthesisError>
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where
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F: FnOnce() -> Result<T, SynthesisError>,
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T: Borrow<u64>,
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{
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let val = value_gen()?.borrow().clone();
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Self::_alloc(&mut cs.ns(|| "alloc u64"), Some(val))
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}
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fn alloc_input<F, T, CS: ConstraintSystem<ConstraintF>>(
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mut cs: CS,
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value_gen: F,
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) -> Result<Self, SynthesisError>
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where
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F: FnOnce() -> Result<T, SynthesisError>,
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T: Borrow<u64>,
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{
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let val = value_gen()?.borrow().clone();
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Self::_alloc(&mut cs.ns(|| "alloc u64"), Some(val))
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}
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}
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impl<ConstraintF: Field> ToBytesGadget<ConstraintF> for UInt64 {
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#[inline]
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fn to_bytes<CS: ConstraintSystem<ConstraintF>>(
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@ -302,7 +330,7 @@ impl ToBytesGadget for UInt64 { |
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let mut bytes = Vec::new();
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for (i, chunk8) in self.to_bits_le().chunks(8).enumerate() {
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let byte = UInt8 {
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bits: chunk8.to_vec(),
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bits: chunk8.to_vec(),
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value: value_chunks[i],
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};
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bytes.push(byte);
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@ -310,6 +338,13 @@ impl ToBytesGadget for UInt64 { |
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Ok(bytes)
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}
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fn to_bytes_strict<CS: ConstraintSystem<ConstraintF>>(
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&self,
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cs: CS,
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) -> Result<Vec<UInt8>, SynthesisError> {
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self.to_bytes(cs)
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}
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}
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impl PartialEq for UInt64 {
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@ -345,7 +380,10 @@ impl ConditionalEqGadget for UInt64 { |
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#[cfg(test)]
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mod test {
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use super::UInt64;
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use crate::{bits::boolean::Boolean, test_constraint_system::TestConstraintSystem, Vec};
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use crate::{
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alloc::AllocGadget, bits::boolean::Boolean, test_constraint_system::TestConstraintSystem,
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Vec,
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};
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use algebra::{bls12_381::Fr, One, Zero};
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use r1cs_core::ConstraintSystem;
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use rand::{Rng, SeedableRng};
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@ -366,7 +404,7 @@ mod test { |
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match bit_gadget {
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&Boolean::Constant(bit_gadget) => {
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assert!(bit_gadget == ((b.value.unwrap() >> i) & 1 == 1));
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},
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}
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_ => unreachable!(),
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}
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}
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@ -375,8 +413,8 @@ mod test { |
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for x in v.iter().zip(expected_to_be_same.iter()) {
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match x {
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(&Boolean::Constant(true), &Boolean::Constant(true)) => {},
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(&Boolean::Constant(false), &Boolean::Constant(false)) => {},
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(&Boolean::Constant(true), &Boolean::Constant(true)) => {}
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(&Boolean::Constant(false), &Boolean::Constant(false)) => {}
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_ => unreachable!(),
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}
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}
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@ -396,9 +434,9 @@ mod test { |
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let mut expected = a ^ b ^ c;
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let a_bit = UInt64::alloc(cs.ns(|| "a_bit"), Some(a)).unwrap();
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let a_bit = UInt64::alloc(cs.ns(|| "a_bit"), || Ok(a)).unwrap();
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let b_bit = UInt64::constant(b);
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let c_bit = UInt64::alloc(cs.ns(|| "c_bit"), Some(c)).unwrap();
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let c_bit = UInt64::alloc(cs.ns(|| "c_bit"), || Ok(c)).unwrap();
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let r = a_bit.xor(cs.ns(|| "first xor"), &b_bit).unwrap();
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let r = r.xor(cs.ns(|| "second xor"), &c_bit).unwrap();
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@ -411,13 +449,13 @@ mod test { |
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match b {
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&Boolean::Is(ref b) => {
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assert!(b.get_value().unwrap() == (expected & 1 == 1));
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},
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}
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&Boolean::Not(ref b) => {
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assert!(!b.get_value().unwrap() == (expected & 1 == 1));
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},
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}
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&Boolean::Constant(b) => {
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assert!(b == (expected & 1 == 1));
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},
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}
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}
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expected >>= 1;
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@ -452,7 +490,7 @@ mod test { |
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&Boolean::Not(_) => panic!(),
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&Boolean::Constant(b) => {
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assert!(b == (expected & 1 == 1));
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},
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}
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}
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expected >>= 1;
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@ -474,10 +512,10 @@ mod test { |
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let mut expected = (a ^ b).wrapping_add(c).wrapping_add(d);
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let a_bit = UInt64::alloc(cs.ns(|| "a_bit"), Some(a)).unwrap();
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let a_bit = UInt64::alloc(cs.ns(|| "a_bit"), || Ok(a)).unwrap();
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let b_bit = UInt64::constant(b);
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let c_bit = UInt64::constant(c);
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let d_bit = UInt64::alloc(cs.ns(|| "d_bit"), Some(d)).unwrap();
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let d_bit = UInt64::alloc(cs.ns(|| "d_bit"), || Ok(d)).unwrap();
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let r = a_bit.xor(cs.ns(|| "xor"), &b_bit).unwrap();
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let r = UInt64::addmany(cs.ns(|| "addition"), &[r, c_bit, d_bit]).unwrap();
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@ -490,10 +528,10 @@ mod test { |
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match b {
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&Boolean::Is(ref b) => {
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assert!(b.get_value().unwrap() == (expected & 1 == 1));
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},
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}
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&Boolean::Not(ref b) => {
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assert!(!b.get_value().unwrap() == (expected & 1 == 1));
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},
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}
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&Boolean::Constant(_) => unreachable!(),
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}
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@ -529,7 +567,7 @@ mod test { |
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match b {
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&Boolean::Constant(b) => {
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assert_eq!(b, tmp & 1 == 1);
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},
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}
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_ => unreachable!(),
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}
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