use super::*;
use crate::zkevm_opcode_defs::{BinopOpcode, Opcode};
impl<const N: usize, E: VmEncodingMode<N>> DecodedOpcode<N, E> {
pub fn binop_opcode_apply<
S: zk_evm_abstractions::vm::Storage,
M: zk_evm_abstractions::vm::Memory,
EV: zk_evm_abstractions::vm::EventSink,
PP: zk_evm_abstractions::vm::PrecompilesProcessor,
DP: zk_evm_abstractions::vm::DecommittmentProcessor,
WT: crate::witness_trace::VmWitnessTracer<N, E>,
>(
&self,
vm_state: &mut VmState<S, M, EV, PP, DP, WT, N, E>,
prestate: PreState<N, E>,
) {
let PreState {
src0,
src1,
dst0_mem_location,
new_pc,
..
} = prestate;
let PrimitiveValue {
value: src0,
is_pointer: _,
} = src0;
let PrimitiveValue {
value: src1,
is_pointer: _,
} = src1;
let inner_variant = match self.variant.opcode {
Opcode::Binop(inner) => inner,
_ => unreachable!(),
};
use crate::zkevm_opcode_defs::SET_FLAGS_FLAG_IDX;
let set_flags = self.variant.flags[SET_FLAGS_FLAG_IDX];
vm_state.local_state.callstack.get_current_stack_mut().pc = new_pc;
let result = match inner_variant {
BinopOpcode::Xor => src0 ^ src1,
BinopOpcode::And => src0 & src1,
BinopOpcode::Or => src0 | src1,
};
if set_flags {
let eq = result.is_zero();
vm_state.reset_flags();
vm_state.local_state.flags.equality_flag = eq;
}
let result = PrimitiveValue {
value: result,
is_pointer: false,
};
vm_state.perform_dst0_update(
vm_state.local_state.monotonic_cycle_counter,
result,
dst0_mem_location,
self,
);
}
}