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@@ -1,39 +1,52 @@
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-use super::{compiler::MAGIC_BYTES, opcode::Opcode, types::Type};
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+use super::{compiler::MAGIC_BYTES, types::StackType, LitType, Opcode, VarType};
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use crate::{
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use crate::{
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util::serial::{deserialize_partial, VarInt},
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util::serial::{deserialize_partial, VarInt},
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- Error::ZkasDecoderError,
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+ Error::ZkasDecoderError as ZkasErr,
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Result,
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Result,
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};
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};
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+/// A ZkBinary decoded from compiled zkas code.
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+/// This is used by the zkvm.
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#[derive(Clone, Debug)]
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#[derive(Clone, Debug)]
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pub struct ZkBinary {
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pub struct ZkBinary {
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- pub constants: Vec<(Type, String)>,
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- pub witnesses: Vec<Type>,
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- pub opcodes: Vec<(Opcode, Vec<usize>)>,
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+ pub constants: Vec<(VarType, String)>,
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+ pub literals: Vec<(LitType, String)>,
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+ pub witnesses: Vec<VarType>,
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+ pub opcodes: Vec<(Opcode, Vec<(StackType, usize)>)>,
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+}
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+
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+// https://stackoverflow.com/questions/35901547/how-can-i-find-a-subsequence-in-a-u8-slice
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+fn find_subslice(haystack: &[u8], needle: &[u8]) -> Option<usize> {
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+ haystack.windows(needle.len()).position(|window| window == needle)
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}
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}
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impl ZkBinary {
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impl ZkBinary {
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pub fn decode(bytes: &[u8]) -> Result<Self> {
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pub fn decode(bytes: &[u8]) -> Result<Self> {
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let magic_bytes = &bytes[0..4];
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let magic_bytes = &bytes[0..4];
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if magic_bytes != MAGIC_BYTES {
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if magic_bytes != MAGIC_BYTES {
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- return Err(ZkasDecoderError("Magic bytes are incorrect."))
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+ return Err(ZkasErr("Magic bytes are incorrect.".to_string()))
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}
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}
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let _binary_version = &bytes[4];
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let _binary_version = &bytes[4];
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let constants_offset = match find_subslice(bytes, b".constant") {
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let constants_offset = match find_subslice(bytes, b".constant") {
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Some(v) => v,
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Some(v) => v,
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- None => return Err(ZkasDecoderError("Could not find .constant section.")),
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+ None => return Err(ZkasErr("Could not find .constant section".to_string())),
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+ };
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+
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+ let literals_offset = match find_subslice(bytes, b".literal") {
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+ Some(v) => v,
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+ None => return Err(ZkasErr("Could not find .literal section".to_string())),
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};
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};
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let contract_offset = match find_subslice(bytes, b".contract") {
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let contract_offset = match find_subslice(bytes, b".contract") {
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Some(v) => v,
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Some(v) => v,
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- None => return Err(ZkasDecoderError("Could not find .contract section")),
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+ None => return Err(ZkasErr("Could not find .contract section".to_string())),
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};
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};
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let circuit_offset = match find_subslice(bytes, b".circuit") {
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let circuit_offset = match find_subslice(bytes, b".circuit") {
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Some(v) => v,
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Some(v) => v,
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- None => return Err(ZkasDecoderError("Could not find .circuit section")),
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+ None => return Err(ZkasErr("Could not find .circuit section".to_string())),
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};
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};
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let debug_offset = match find_subslice(bytes, b".debug") {
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let debug_offset = match find_subslice(bytes, b".debug") {
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@@ -41,36 +54,50 @@ impl ZkBinary {
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None => bytes.len(),
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None => bytes.len(),
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};
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};
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- if constants_offset > contract_offset {
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- return Err(ZkasDecoderError(".contract appeared before .constant"))
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+ if constants_offset > literals_offset {
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+ return Err(ZkasErr(".literal section appeared before .constant".to_string()))
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+ }
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+
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+ if literals_offset > contract_offset {
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+ return Err(ZkasErr(".contract section appeared before .literal".to_string()))
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}
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}
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if contract_offset > circuit_offset {
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if contract_offset > circuit_offset {
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- return Err(ZkasDecoderError(".contract appeared before .circuit"))
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+ return Err(ZkasErr(".circuit section appeared before .contract".to_string()))
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}
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}
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if circuit_offset > debug_offset {
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if circuit_offset > debug_offset {
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- return Err(ZkasDecoderError(".circuit appeared before .debug or EOF"))
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+ return Err(ZkasErr(".debug section appeared before .circuit or EOF".to_string()))
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}
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}
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- let constants_section = &bytes[constants_offset + b".constant".len()..contract_offset];
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+ let constants_section = &bytes[constants_offset + b".constant".len()..literals_offset];
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+ let literals_section = &bytes[literals_offset + b".literal".len()..contract_offset];
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let contract_section = &bytes[contract_offset + b".contract".len()..circuit_offset];
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let contract_section = &bytes[contract_offset + b".contract".len()..circuit_offset];
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let circuit_section = &bytes[circuit_offset + b".circuit".len()..debug_offset];
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let circuit_section = &bytes[circuit_offset + b".circuit".len()..debug_offset];
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let constants = ZkBinary::parse_constants(constants_section)?;
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let constants = ZkBinary::parse_constants(constants_section)?;
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+ let literals = ZkBinary::parse_literals(literals_section)?;
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let witnesses = ZkBinary::parse_contract(contract_section)?;
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let witnesses = ZkBinary::parse_contract(contract_section)?;
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let opcodes = ZkBinary::parse_circuit(circuit_section)?;
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let opcodes = ZkBinary::parse_circuit(circuit_section)?;
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// TODO: Debug info
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// TODO: Debug info
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- Ok(Self { constants, witnesses, opcodes })
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+ Ok(Self { constants, literals, witnesses, opcodes })
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}
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}
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- fn parse_constants(bytes: &[u8]) -> Result<Vec<(Type, String)>> {
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+ fn parse_constants(bytes: &[u8]) -> Result<Vec<(VarType, String)>> {
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let mut constants = vec![];
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let mut constants = vec![];
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let mut iter_offset = 0;
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let mut iter_offset = 0;
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while iter_offset < bytes.len() {
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while iter_offset < bytes.len() {
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- let c_type = Type::from_repr(bytes[iter_offset]);
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+ let c_type = match VarType::from_repr(bytes[iter_offset]) {
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+ Some(v) => v,
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+ None => {
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+ return Err(ZkasErr(format!(
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+ "Could not decode constant VarType from {}",
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+ bytes[iter_offset],
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+ )))
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+ }
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+ };
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iter_offset += 1;
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iter_offset += 1;
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let (name, offset) = deserialize_partial::<String>(&bytes[iter_offset..])?;
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let (name, offset) = deserialize_partial::<String>(&bytes[iter_offset..])?;
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iter_offset += offset;
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iter_offset += offset;
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@@ -81,12 +108,45 @@ impl ZkBinary {
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Ok(constants)
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Ok(constants)
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}
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}
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- fn parse_contract(bytes: &[u8]) -> Result<Vec<Type>> {
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+ fn parse_literals(bytes: &[u8]) -> Result<Vec<(LitType, String)>> {
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+ let mut literals = vec![];
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+
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+ let mut iter_offset = 0;
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+ while iter_offset < bytes.len() {
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+ let l_type = match LitType::from_repr(bytes[iter_offset]) {
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+ Some(v) => v,
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+ None => {
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+ return Err(ZkasErr(format!(
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+ "Could not decode literal LitType from {}",
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+ bytes[iter_offset],
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+ )))
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+ }
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+ };
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+ iter_offset += 1;
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+ let (name, offset) = deserialize_partial::<String>(&bytes[iter_offset..])?;
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+ iter_offset += offset;
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+
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+ literals.push((l_type, name));
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+ }
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+
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+ Ok(literals)
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+ }
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+
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+ fn parse_contract(bytes: &[u8]) -> Result<Vec<VarType>> {
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let mut witnesses = vec![];
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let mut witnesses = vec![];
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let mut iter_offset = 0;
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let mut iter_offset = 0;
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while iter_offset < bytes.len() {
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while iter_offset < bytes.len() {
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- let w_type = Type::from_repr(bytes[iter_offset]);
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+ let w_type = match VarType::from_repr(bytes[iter_offset]) {
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+ Some(v) => v,
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+ None => {
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+ return Err(ZkasErr(format!(
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+ "Could not decode witness VarType from {}",
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+ bytes[iter_offset],
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+ )))
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+ }
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+ };
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+
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iter_offset += 1;
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iter_offset += 1;
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witnesses.push(w_type);
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witnesses.push(w_type);
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@@ -95,12 +155,20 @@ impl ZkBinary {
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Ok(witnesses)
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Ok(witnesses)
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}
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}
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- fn parse_circuit(bytes: &[u8]) -> Result<Vec<(Opcode, Vec<usize>)>> {
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+ fn parse_circuit(bytes: &[u8]) -> Result<Vec<(Opcode, Vec<(StackType, usize)>)>> {
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let mut opcodes = vec![];
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let mut opcodes = vec![];
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let mut iter_offset = 0;
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let mut iter_offset = 0;
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while iter_offset < bytes.len() {
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while iter_offset < bytes.len() {
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- let opcode = Opcode::from_repr(bytes[iter_offset]);
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+ let opcode = match Opcode::from_repr(bytes[iter_offset]) {
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+ Some(v) => v,
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+ None => {
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+ return Err(ZkasErr(format!(
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+ "Could not decode Opcode from {}",
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+ bytes[iter_offset]
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+ )))
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+ }
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+ };
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iter_offset += 1;
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iter_offset += 1;
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let (arg_num, offset) = deserialize_partial::<VarInt>(&bytes[iter_offset..])?;
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let (arg_num, offset) = deserialize_partial::<VarInt>(&bytes[iter_offset..])?;
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@@ -108,9 +176,20 @@ impl ZkBinary {
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let mut args = vec![];
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let mut args = vec![];
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for _ in 0..arg_num.0 {
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for _ in 0..arg_num.0 {
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+ let stack_type = bytes[iter_offset];
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+ iter_offset += 1;
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let (stack_index, offset) = deserialize_partial::<VarInt>(&bytes[iter_offset..])?;
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let (stack_index, offset) = deserialize_partial::<VarInt>(&bytes[iter_offset..])?;
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iter_offset += offset;
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iter_offset += offset;
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- args.push(stack_index.0 as usize); // FIXME
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+ let stack_type = match StackType::from_repr(stack_type) {
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+ Some(v) => v,
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+ None => {
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+ return Err(ZkasErr(format!(
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+ "Could not decode StackType from {}",
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+ stack_type
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+ )))
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+ }
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+ };
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+ args.push((stack_type, stack_index.0 as usize)); // FIXME, why?
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}
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}
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opcodes.push((opcode, args));
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opcodes.push((opcode, args));
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@@ -119,8 +198,3 @@ impl ZkBinary {
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Ok(opcodes)
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Ok(opcodes)
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}
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}
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}
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}
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-
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-// https://stackoverflow.com/questions/35901547/how-can-i-find-a-subsequence-in-a-u8-slice
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-fn find_subslice(haystack: &[u8], needle: &[u8]) -> Option<usize> {
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- haystack.windows(needle.len()).position(|window| window == needle)
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-}
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