Implement booleans
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@ -9,7 +9,10 @@ type EvalResult = (AST, Environment);
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impl Environment {
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pub fn new() -> Environment {
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Environment(HashMap::new())
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let mut map = HashMap::new();
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map.insert("true".to_string(), LangTrue);
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map.insert("false".to_string(), LangFalse);
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Environment(map)
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}
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fn add_binding(&mut self, name: String, binding: AST) {
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@ -45,7 +48,9 @@ pub fn evaluate(ast: AST, env: Environment) -> (String, Environment) {
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Number(n) => format!("{}", n),
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LangString(s) => format!("\"{}\"", s),
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Null => "null".to_string(),
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_ => "not implemented".to_string()
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LangFalse => "false".to_string(),
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LangTrue => "true".to_string(),
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other => format!("reducing {:?} not implemented", other)
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};
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(output, final_env)
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@ -59,7 +64,7 @@ fn reduce(evr: EvalResult) -> EvalResult {
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IfStatement(if_clause, then_clause, else_clause) => {
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let (condition, new_env) = reduce((*if_clause, env));
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match condition {
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Null => match else_clause {
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Null | LangFalse => match else_clause {
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Some(cl) => reduce((*cl, new_env)),
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None => (DoNothing, new_env)
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},
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@ -71,7 +76,7 @@ fn reduce(evr: EvalResult) -> EvalResult {
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WhileStatement(condition, body) => {
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let (continue_loop, env) = reduce((*condition.clone(), env));
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match continue_loop {
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Null => (DoNothing, env),
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Null | LangFalse => (DoNothing, env),
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_ => {
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let (_, new_env) = reduce((*body.clone(), env));
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reduce((WhileStatement(condition, body), new_env))
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@ -83,13 +88,15 @@ fn reduce(evr: EvalResult) -> EvalResult {
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let (reduced_lhs, new_env) = reduce((*lhs, env));
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let (reduced_rhs, new_env2) = reduce((*rhs, new_env));
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let result: AST = reduce_binop(*op, reduced_lhs, reduced_rhs);
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(result, new_env2)
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reduce((result, new_env2))
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},
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Name(name) => {
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let result = match env.lookup_binding(&name) {
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Some(binding) => match binding {
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&DoNothing => DoNothing,
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&LangTrue => LangTrue,
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&LangFalse => LangFalse,
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&Number(n) => Number(n),
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&LangString(ref s) => LangString(s.clone()),
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&Null => Null,
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@ -126,10 +133,6 @@ fn reduce(evr: EvalResult) -> EvalResult {
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}
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fn reduce_binop(op: AST, lhs: AST, rhs: AST) -> AST {
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macro_rules! LangBool {
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(true) => [Name("true".to_string())];
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(false) => [Name("false".to_string())];
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}
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match (lhs, rhs) {
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(Number(l), Number(r)) => match op {
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@ -137,9 +140,9 @@ fn reduce_binop(op: AST, lhs: AST, rhs: AST) -> AST {
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Name(ref s) if *s == "-" => Number(l - r),
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Name(ref s) if *s == "*" => Number(l * r),
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Name(ref s) if *s == "/" => if r == 0.0 { Null } else { Number(l / r) },
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Name(ref s) if *s == "==" => if l == r { LangBool!(true) } else { LangBool!(false) },
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Name(ref s) if *s == ">" => if l > r { LangBool!(true) } else { LangBool!(false) },
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Name(ref s) if *s == "<" => if l < r { LangBool!(true) } else { LangBool!(false) },
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Name(ref s) if *s == "==" => if l == r { LangTrue } else { LangFalse },
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Name(ref s) if *s == ">" => if l > r { LangTrue } else { LangFalse },
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Name(ref s) if *s == "<" => if l < r { LangTrue } else { LangFalse },
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_ => Null
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},
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@ -7,6 +7,8 @@ use tokenizer::Token::*;
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#[derive(Debug, Clone)]
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pub enum AST {
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Null,
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LangTrue,
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LangFalse,
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Name(String),
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LangString(String),
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Number(f64),
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