2021-11-09 18:10:47 -08:00
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use std::marker::PhantomData;
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2021-10-07 09:25:57 -07:00
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use crate::field::extension_field::Extendable;
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2021-10-12 11:41:52 -07:00
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use crate::field::field_types::RichField;
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2021-10-04 16:23:34 -07:00
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use crate::gates::arithmetic_u32::{U32ArithmeticGate, NUM_U32_ARITHMETIC_OPS};
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2021-11-09 18:10:47 -08:00
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use crate::iop::target::Target;
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use crate::plonk::circuit_builder::CircuitBuilder;
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2021-10-12 11:41:34 -07:00
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#[derive(Clone)]
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2021-11-10 09:53:27 -08:00
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pub struct U32Target(pub Target);
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impl<F: RichField + Extendable<D>, const D: usize> CircuitBuilder<F, D> {
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pub fn add_virtual_u32_target(&mut self) -> U32Target {
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U32Target(self.add_virtual_target())
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}
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pub fn add_virtual_u32_targets(&mut self, n: usize) -> Vec<U32Target> {
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self.add_virtual_targets(n)
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.into_iter()
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.map(U32Target)
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.collect()
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2021-10-04 14:17:19 -07:00
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}
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pub fn zero_u32(&mut self) -> U32Target {
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U32Target(self.zero())
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}
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2021-10-12 11:41:34 -07:00
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pub fn one_u32(&mut self) -> U32Target {
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U32Target(self.one())
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}
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2021-10-04 16:23:21 -07:00
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// Returns x * y + z.
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pub fn mul_add_u32(
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&mut self,
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x: U32Target,
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y: U32Target,
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z: U32Target,
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) -> (U32Target, U32Target) {
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let (gate_index, copy) = self.find_u32_arithmetic_gate();
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self.connect(
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Target::wire(
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gate_index,
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U32ArithmeticGate::<F, D>::wire_ith_multiplicand_0(copy),
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),
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x.0,
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);
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self.connect(
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Target::wire(
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gate_index,
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U32ArithmeticGate::<F, D>::wire_ith_multiplicand_1(copy),
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),
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y.0,
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);
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self.connect(
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Target::wire(gate_index, U32ArithmeticGate::<F, D>::wire_ith_addend(copy)),
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z.0,
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);
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let output_low = U32Target(Target::wire(
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gate_index,
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U32ArithmeticGate::<F, D>::wire_ith_output_low_half(copy),
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));
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let output_high = U32Target(Target::wire(
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gate_index,
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U32ArithmeticGate::<F, D>::wire_ith_output_high_half(copy),
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));
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2021-11-09 18:10:47 -08:00
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(output_low, output_high)
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}
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pub fn add_u32(&mut self, a: U32Target, b: U32Target) -> (U32Target, U32Target) {
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let one = self.one_u32();
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self.mul_add_u32(a, one, b)
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}
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2021-10-04 14:17:28 -07:00
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pub fn add_three_u32(
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&mut self,
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a: U32Target,
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b: U32Target,
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c: U32Target,
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) -> (U32Target, U32Target) {
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let (init_low, carry1) = self.add_u32(a, b);
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let (final_low, carry2) = self.add_u32(c, init_low);
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let (combined_carry, _zero) = self.add_u32(carry1, carry2);
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(final_low, combined_carry)
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}
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2021-11-09 18:10:47 -08:00
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pub fn mul_u32(&mut self, a: U32Target, b: U32Target) -> (U32Target, U32Target) {
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let zero = self.zero_u32();
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self.mul_add_u32(a, b, zero)
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}
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2021-11-10 09:56:21 -08:00
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// Returns x * y + z.
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pub fn sub_u32(
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&mut self,
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x: U32Target,
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y: U32Target,
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borrow: U32Target,
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) -> (U32Target, U32Target) {
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let (gate_index, copy) = self.find_u32_subtraction_gate();
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self.connect(
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Target::wire(
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gate_index,
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U32ArithmeticGate::<F, D>::wire_ith_multiplicand_0(copy),
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),
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x.0,
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);
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self.connect(
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Target::wire(
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gate_index,
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U32ArithmeticGate::<F, D>::wire_ith_multiplicand_1(copy),
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),
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y.0,
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);
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self.connect(
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Target::wire(gate_index, U32ArithmeticGate::<F, D>::wire_ith_addend(copy)),
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z.0,
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);
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let output_low = U32Target(Target::wire(
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gate_index,
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U32ArithmeticGate::<F, D>::wire_ith_output_low_half(copy),
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));
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let output_high = U32Target(Target::wire(
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gate_index,
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U32ArithmeticGate::<F, D>::wire_ith_output_high_half(copy),
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));
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(output_low, output_high)
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}
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2021-11-09 18:10:47 -08:00
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}
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