mantra / runtime /evaluator.py
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# runtime/evaluator.py
from __future__ import annotations
from mantra_ast.nodes import *
from runtime.types import *
from runtime.stdlib import sha256 as _sha256_mod
from runtime.stdlib import integer as _int_mod
from runtime.stdlib import bit as _bit_mod
from runtime.stdlib import bytes as _bytes_mod
from runtime.stdlib import hex as _hex_mod
from runtime.stdlib import string as _str_mod
from runtime.stdlib import collections as _coll_mod
from runtime.stdlib import result as _res_mod
from runtime.stdlib import testing as _test_mod
class ReturnSignal(Exception):
def __init__(self, value):
self.value = value
class Evaluator:
def __init__(self):
self.globals: dict = {}
self._load_builtins()
# ── builtins ──────────────────────────────────────────────────────────
def _load_builtins(self):
b = self.globals
# sha256
b['sha256'] = BuiltinValue('sha256', lambda a: _sha256_mod.sha256_fn(a[0]))
b['sha256_hex'] = BuiltinValue('sha256_hex', lambda a: _sha256_mod.sha256_hex_fn(a[0]))
# integer conversions
b['integer_to_bytes'] = BuiltinValue('integer_to_bytes',
lambda a: integer_to_bytes(a[0], a[1].value if isinstance(a[1], Integer) else int(a[1])))
b['bytes_to_integer'] = BuiltinValue('bytes_to_integer',
lambda a: bytes_to_integer(a[0]))
b['hex_to_bytes'] = BuiltinValue('hex_to_bytes',
lambda a: _hex_mod.hex_to_bytes(a[0]))
b['bytes_to_hex'] = BuiltinValue('bytes_to_hex',
lambda a: _hex_mod.bytes_to_hex(a[0]))
# bytes ops
b['concat'] = BuiltinValue('concat', lambda a: _bytes_mod.concat_bytes(*a)
if all(isinstance(x, Bytes) for x in a)
else _str_mod.concat_strings(*a))
b['len'] = BuiltinValue('len', lambda a:
_bytes_mod.len_bytes(a[0]) if isinstance(a[0], Bytes)
else _coll_mod.list_len(a[0]) if isinstance(a[0], ListValue)
else _str_mod.len_string(a[0]))
b['slice'] = BuiltinValue('slice', lambda a: _bytes_mod.slice_bytes(a[0], a[1], a[2]))
# option / result
b['some'] = BuiltinValue('some', lambda a: _res_mod.some(a[0]))
b['none'] = BuiltinValue('none', lambda _: _res_mod.none())
b['ok'] = BuiltinValue('ok', lambda a: _res_mod.ok(a[0]))
b['err'] = BuiltinValue('err', lambda a: _res_mod.err(a[0]))
# testing
b['assert_eq'] = BuiltinValue('assert_eq', lambda a: _test_mod.assert_eq(a[0], a[1]))
b['assert_true']= BuiltinValue('assert_true', lambda a: _test_mod.assert_true(a[0]))
# print
b['print'] = BuiltinValue('print', lambda a: print(*[self._display(x) for x in a]) or String(''))
# ── eval entry points ─────────────────────────────────────────────────
def eval_program(self, prog: Program):
result = None
for module in prog.modules:
for item in module.items:
result = self.eval_item(item, self.globals)
return result
def eval_item(self, node: Node, env: dict):
if isinstance(node, ConstDecl):
val = self.eval_expr(node.value, env)
env[node.name] = val
return val
if isinstance(node, LetDecl):
val = self.eval_expr(node.value, env)
env[node.name] = val
return val
if isinstance(node, FunctionDecl):
fn = FunctionValue(name=node.name, params=node.params,
body=node.body, closure=dict(env))
env[node.name] = fn
return fn
if isinstance(node, Assert):
val = self.eval_expr(node.expr, env)
v = val.value if isinstance(val, Boolean) else bool(val)
if not v:
raise AssertionFailure(f"assert failed")
return val
return self.eval_expr(node, env)
# ── expression evaluator ──────────────────────────────────────────────
def eval_expr(self, node: Node, env: dict):
if isinstance(node, IntegerLiteral):
return Integer(node.value)
if isinstance(node, HexLiteral):
return Integer(node.value)
if isinstance(node, BoolLiteral):
return Boolean(node.value)
if isinstance(node, StringLiteral):
return String(node.value)
if isinstance(node, BytesLiteral):
return Bytes(node.value)
if isinstance(node, ListLiteral):
return ListValue([self.eval_expr(i, env) for i in node.items])
if isinstance(node, DictLiteral):
return DictValue({k: self.eval_expr(v, env) for k, v in node.pairs})
if isinstance(node, OptionLiteral):
v = self.eval_expr(node.value, env) if node.value else None
return Option(tag=node.tag, value=v)
if isinstance(node, Identifier):
if node.name not in env:
raise UndefinedName(f"undefined: {node.name!r}")
return env[node.name]
if isinstance(node, FieldAccess):
obj = self.eval_expr(node.obj, env)
if isinstance(obj, DictValue):
if node.field not in obj.fields:
raise InvalidArgument(f"field {node.field!r} not found")
return obj.fields[node.field]
raise InvalidType(f"field access on non-dict {type(obj).__name__}")
if isinstance(node, Call):
return self.eval_call(node, env)
if isinstance(node, BinaryExpr):
return self.eval_binary(node, env)
if isinstance(node, UnaryExpr):
return self.eval_unary(node, env)
if isinstance(node, ConstDecl) or isinstance(node, LetDecl):
val = self.eval_expr(node.value, env)
env[node.name] = val
return val
raise MantraError(f"Cannot eval node: {type(node).__name__}")
def eval_call(self, node: Call, env: dict):
fn = env.get(node.callee)
if fn is None:
raise UndefinedName(f"undefined function: {node.callee!r}")
args = [self.eval_expr(a, env) for a in node.args]
if isinstance(fn, BuiltinValue):
return fn.fn(args) or String('')
if isinstance(fn, FunctionValue):
local = dict(fn.closure)
local.update(self.globals)
for p, a in zip(fn.params, args):
local[p] = a
try:
result = None
for stmt in fn.body:
if isinstance(stmt, Return):
raise ReturnSignal(self.eval_expr(stmt.expr, local))
elif isinstance(stmt, LetDecl) or isinstance(stmt, ConstDecl):
v = self.eval_expr(stmt.value, local)
local[stmt.name] = v
else:
result = self.eval_item(stmt, local)
return result
except ReturnSignal as r:
return r.value
raise InvalidType(f"{node.callee!r} is not callable")
def eval_binary(self, node: BinaryExpr, env: dict):
l = self.eval_expr(node.left, env)
r = self.eval_expr(node.right, env)
op = node.op
if op == '+':
if isinstance(l, Integer) and isinstance(r, Integer):
return Integer(l.value + r.value)
if isinstance(l, Bytes) and isinstance(r, Bytes):
return Bytes(l.data + r.data)
if isinstance(l, String) and isinstance(r, String):
return String(l.text + r.text)
if op == '-' and isinstance(l, Integer): return Integer(l.value - r.value)
if op == '*' and isinstance(l, Integer): return Integer(l.value * r.value)
if op == '/' and isinstance(l, Integer):
if r.value == 0: raise DivisionByZero("division by zero")
return Integer(l.value // r.value)
if op == '%' and isinstance(l, Integer):
if r.value == 0: raise DivisionByZero("mod by zero")
return Integer(l.value % r.value)
if op == '**' and isinstance(l, Integer): return Integer(l.value ** r.value)
if op == '&' and isinstance(l, Integer): return Integer(l.value & r.value)
if op == '|' and isinstance(l, Integer): return Integer(l.value | r.value)
if op == '^' and isinstance(l, Integer): return Integer(l.value ^ r.value)
if op == '<<' and isinstance(l, Integer): return Integer(l.value << r.value)
if op == '>>' and isinstance(l, Integer): return Integer(l.value >> r.value)
if op == '==': return Boolean(self._eq(l, r))
if op == '!=': return Boolean(not self._eq(l, r))
if op == '<' and isinstance(l, Integer): return Boolean(l.value < r.value)
if op == '>' and isinstance(l, Integer): return Boolean(l.value > r.value)
if op == '<=' and isinstance(l, Integer): return Boolean(l.value <= r.value)
if op == '>=' and isinstance(l, Integer): return Boolean(l.value >= r.value)
if op in ('and', '&&'): return Boolean(self._truthy(l) and self._truthy(r))
if op in ('or', '||'): return Boolean(self._truthy(l) or self._truthy(r))
raise MantraError(f"Unknown binary op {op!r} on {type(l).__name__}")
def eval_unary(self, node: UnaryExpr, env: dict):
v = self.eval_expr(node.operand, env)
if node.op == '-' and isinstance(v, Integer): return Integer(-v.value)
if node.op == '~' and isinstance(v, Integer): return Integer(~v.value)
if node.op in ('not', '!'): return Boolean(not self._truthy(v))
raise MantraError(f"Unknown unary op {node.op!r}")
def _eq(self, a, b) -> bool:
if type(a) != type(b): return False
if isinstance(a, Integer): return a.value == b.value
if isinstance(a, Boolean): return a.value == b.value
if isinstance(a, String): return a.text == b.text
if isinstance(a, Bytes): return a.data == b.data
return a == b
def _truthy(self, v) -> bool:
if isinstance(v, Boolean): return v.value
if isinstance(v, Integer): return v.value != 0
if isinstance(v, String): return len(v.text) > 0
if isinstance(v, Bytes): return len(v.data) > 0
if isinstance(v, Option): return v.tag == 'some'
if isinstance(v, Result): return v.tag == 'ok'
return bool(v)
def _display(self, v) -> str:
if isinstance(v, Integer): return str(v.value)
if isinstance(v, Boolean): return str(v.value).lower()
if isinstance(v, String): return v.text
if isinstance(v, Bytes): return v.data.hex()
if isinstance(v, Option): return f"some({self._display(v.value)})" if v.tag == 'some' else 'none'
if isinstance(v, Result): return f"{v.tag}({self._display(v.value)})"
return repr(v)