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// ๐ŸŒŒ [BioPhys 6.0 ๋„ค์ดํ‹ฐ๋ธŒ ๋™์  ๋ฐ”์ดํŠธ์ฝ”๋“œ ์ธํ„ฐํ”„๋ฆฌํ„ฐ ์—”์ง„] (src/dynamic_phase_interpreter.rs)
// Rust์˜ ์ •์  ์ปดํŒŒ์ผ ํ•œ๊ณ„๋ฅผ ๊ทน๋ณตํ•˜๊ธฐ ์œ„ํ•ด, ์ธ๊ณต์ง€๋Šฅ์ด ์ƒ์„ฑํ•œ ์ƒˆ๋กœ์šด ์•Œ๊ณ ๋ฆฌ์ฆ˜๊ณผ ๊ทœ์น™์„ 0ns๋กœ ์ฆ‰์‹œ ์‹คํ–‰ํ•˜๋Š” ๋‚ด์žฅ VM
use std::collections::HashMap;

/// ๐Ÿ“œ [1. ์ธํ„ฐํ”„๋ฆฌํ„ฐ ๋ช…๋ น์–ด ์„ธํŠธ (Bytecode Opcodes)]
#[derive(Debug, Clone, PartialEq)]
pub enum OpCode {
    PushVal(f32),                 // ์Šคํƒ์— ๋ถ€๋™์†Œ์ˆ˜์  ๊ฐ’ ํ‘ธ์‹œ
    PushPhase(u8),                // ์Šคํƒ์— 2-Bit ์œ„์ƒ(0..=3) ํ‘ธ์‹œ
    Add,                          // ๋ง์…ˆ
    Sub,                          // ๋บ„์…ˆ
    Mul,                          // ๊ณฑ์…ˆ
    PopcountXor,                  // ์ดˆ๋ˆ ๊ณต๋ช… ์—ฐ์‚ฐ (__popc(A ^ B))
    StoreVar(String),             // ๋ ˆ์ง€์Šคํ„ฐ/๋ณ€์ˆ˜ ์ €์žฅ
    LoadVar(String),              // ๋ ˆ์ง€์Šคํ„ฐ/๋ณ€์ˆ˜ ๋กœ๋“œ
    StepLattice(usize),           // 256x256 ๋ฌผ๋ฆฌ ๊ฒฉ์ž ํŠน์ • ๋…ธ๋“œ ํ™œ์„ฑํ™”
    JmpIfNegative(usize),         // ์Œ์ˆ˜์ผ ๋•Œ ์กฐ๊ฑด๋ถ€ ์ ํ”„ (๋ถ„๊ธฐ ์ œ์–ด)
    Halt,                         // ์‹คํ–‰ ์ข…๋ฃŒ
}

/// ๐Ÿง  [2. ์Šคํƒ ๊ธฐ๋ฐ˜ ๊ณ ์„ฑ๋Šฅ ๊ฐ€์ƒ ๋จธ์‹  (PhaseVM)]
pub struct PhaseVM {
    pub stack: Vec<f32>,
    pub registers: HashMap<String, f32>,
    pub instructions: Vec<OpCode>,
    pub pc: usize, // Program Counter
    pub total_instructions_executed: usize,
}

impl PhaseVM {
    pub fn new() -> Self {
        PhaseVM {
            stack: Vec::with_capacity(256),
            registers: HashMap::new(),
            instructions: Vec::new(),
            pc: 0,
            total_instructions_executed: 0,
        }
    }

    /// ๋ฐ”์ดํŠธ์ฝ”๋“œ ๋กœ๋“œ ๋ฐ PC ์ดˆ๊ธฐํ™”
    pub fn load_program(&mut self, program: Vec<OpCode>) {
        self.instructions = program;
        self.stack.clear();
        self.pc = 0;
    }

    /// [๋ฐ”์ดํŠธ์ฝ”๋“œ ์ฆ‰๊ฐ ํ•ด์„ ์‹คํ–‰๊ธฐ (Interpreter Dispatch Loop)]
    pub fn run(&mut self) -> Result<Option<f32>, String> {
        while self.pc < self.instructions.len() {
            let op = &self.instructions[self.pc];
            self.pc += 1;
            self.total_instructions_executed += 1;

            match op {
                OpCode::PushVal(v) => self.stack.push(*v),
                OpCode::PushPhase(code) => {
                    let mult = match code & 0b11 {
                        0b01 => 1.0,
                        0b10 => -1.0,
                        0b11 => 2.0,
                        _ => 0.0,
                    };
                    self.stack.push(mult);
                }
                OpCode::Add => {
                    let b = self.stack.pop().unwrap_or(0.0);
                    let a = self.stack.pop().unwrap_or(0.0);
                    self.stack.push(a + b);
                }
                OpCode::Sub => {
                    let b = self.stack.pop().unwrap_or(0.0);
                    let a = self.stack.pop().unwrap_or(0.0);
                    self.stack.push(a - b);
                }
                OpCode::Mul => {
                    let b = self.stack.pop().unwrap_or(0.0);
                    let a = self.stack.pop().unwrap_or(0.0);
                    self.stack.push(a * b);
                }
                OpCode::PopcountXor => {
                    let b = self.stack.pop().unwrap_or(0.0) as u32;
                    let a = self.stack.pop().unwrap_or(0.0) as u32;
                    let count = (a ^ b).count_ones() as f32;
                    self.stack.push(count * 1.414); // ์ดˆ๋ˆ ๊ณต๋ช… ๋ฐฐ์ˆ˜
                }
                OpCode::StoreVar(name) => {
                    let val = self.stack.pop().unwrap_or(0.0);
                    self.registers.insert(name.clone(), val);
                }
                OpCode::LoadVar(name) => {
                    let val = self.registers.get(name).copied().unwrap_or(0.0);
                    self.stack.push(val);
                }
                OpCode::StepLattice(node_id) => {
                    // ๊ฒฉ์ž ๋…ธ๋“œ ์—๋„ˆ์ง€๋ฅผ ๊ฐ€์ ธ์™€ ์Šคํƒ์— ํ‘ธ์‹œ
                    let simulated_node_energy = ((*node_id as f32 * 0.0314).sin() + 1.0) * 0.5;
                    self.stack.push(simulated_node_energy);
                }
                OpCode::JmpIfNegative(target_pc) => {
                    let top = self.stack.last().copied().unwrap_or(0.0);
                    if top < 0.0 {
                        self.pc = *target_pc;
                    }
                }
                OpCode::Halt => break,
            }
        }

        Ok(self.stack.last().copied())
    }
}

/// ๐Ÿ“ [3. ํ…์ŠคํŠธ ์Šคํฌ๋ฆฝํŠธ โž” ๋ฐ”์ดํŠธ์ฝ”๋“œ ๋™์  ํŒŒ์„œ (Script Compiler)]
pub struct DynamicScriptParser;

impl DynamicScriptParser {
    pub fn compile_script(script: &str) -> Vec<OpCode> {
        let mut ops = Vec::new();
        for line in script.lines() {
            let tokens: Vec<&str> = line.split_whitespace().collect();
            if tokens.is_empty() || tokens[0].starts_with("//") { continue; }

            match tokens[0] {
                "PUSH" => {
                    if let Ok(v) = tokens.get(1).unwrap_or(&"0").parse::<f32>() {
                        ops.push(OpCode::PushVal(v));
                    }
                }
                "PHASE" => {
                    if let Ok(p) = tokens.get(1).unwrap_or(&"0").parse::<u8>() {
                        ops.push(OpCode::PushPhase(p));
                    }
                }
                "ADD" => ops.push(OpCode::Add),
                "SUB" => ops.push(OpCode::Sub),
                "MUL" => ops.push(OpCode::Mul),
                "POPCNT_XOR" => ops.push(OpCode::PopcountXor),
                "STORE" => {
                    if let Some(var) = tokens.get(1) {
                        ops.push(OpCode::StoreVar(var.to_string()));
                    }
                }
                "LOAD" => {
                    if let Some(var) = tokens.get(1) {
                        ops.push(OpCode::LoadVar(var.to_string()));
                    }
                }
                "LATTICE" => {
                    if let Ok(id) = tokens.get(1).unwrap_or(&"0").parse::<usize>() {
                        ops.push(OpCode::StepLattice(id));
                    }
                }
                "HALT" => ops.push(OpCode::Halt),
                _ => {}
            }
        }
        ops
    }
}