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23ca1799b2 |
3
TODO.md
3
TODO.md
@ -12,9 +12,12 @@
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- Also, check the codes for FIXME and TODO
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- Allocation is done using pointers for members, is this desired?
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- See if we want to replace Fractional with Real, and add Rational, Irrationl, Algebraic, Transendental
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- Implement q32? q64? Two i32/i64 divided?
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- Does Subscript do what we want? It's a language feature rather a normal typed thing. How would you implement your own Subscript-able type?
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- Clean up Subscript implementation - it's half implemented in the compiler. Makes more sense to move more parts to stdlib_types.
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- Have a set of rules or guidelines for the constraint comments, they're messy.
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- Do we need to store the placeholders on the expressions? They're only temporary while the type checker is running
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- Might not even need to store them at all outside the generated constraints?
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- Parser is putting stuff in ModuleDataBlock
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- Surely the compiler should build data blocks
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@ -2,7 +2,7 @@
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This module contains the code to convert parsed Ourlang into WebAssembly code
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"""
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import struct
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from typing import Dict, List, Optional
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from typing import Dict, List, Optional, Union
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from . import codestyle, ourlang, prelude, wasm
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from .runtime import calculate_alloc_size, calculate_member_offset
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@ -260,6 +260,10 @@ INSTANCES = {
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prelude.Promotable.methods['demote']: {
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'a=f32,b=f64': stdlib_types.f32_f64_demote,
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},
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prelude.Foldable.methods['sum']: {
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'a=i32,t=i32[4]': stdlib_types.static_array_i32_4_sum,
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'a=i32,t=i32[5]': stdlib_types.static_array_i32_5_sum,
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},
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}
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def phasm_compile(inp: ourlang.Module) -> wasm.Module:
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@ -449,7 +453,7 @@ def expression(wgn: WasmGenerator, inp: ourlang.Expression) -> None:
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assert inp.type3 is not None, TYPE3_ASSERTION_ERROR
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type_var_map: Dict[type3functions.TypeVariable, type3types.Type3] = {}
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type_var_map: Dict[Union[type3functions.TypeVariable, type3functions.TypeConstructorVariable], type3types.Type3] = {}
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for type_var, arg_expr in zip(inp.operator.signature.args, [inp.left, inp.right, inp], strict=True):
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if not isinstance(type_var, type3functions.TypeVariable):
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@ -480,12 +484,16 @@ def expression(wgn: WasmGenerator, inp: ourlang.Expression) -> None:
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type_var_map = {}
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for type_var, arg_expr in zip(inp.function.signature.args, inp.arguments + [inp], strict=True):
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if not isinstance(type_var, type3functions.TypeVariable):
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if isinstance(type_var, type3types.Type3):
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# Fixed type, not part of the lookup requirements
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continue
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if isinstance(type_var, (type3functions.TypeVariable, type3functions.TypeConstructorVariable, )):
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assert arg_expr.type3 is not None, TYPE3_ASSERTION_ERROR
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type_var_map[type_var] = arg_expr.type3
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continue
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raise NotImplementedError
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instance_key = ','.join(
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f'{k.letter}={v.name}'
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@ -949,6 +957,7 @@ def module(inp: ourlang.Module) -> wasm.Module:
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stdlib_types.__u32_pow2__,
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stdlib_types.__u8_rotl__,
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stdlib_types.__u8_rotr__,
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stdlib_types.__sa_i32_sum__,
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] + [
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function(x)
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for x in inp.functions.values()
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@ -1,20 +1,27 @@
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"""
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The prelude are all the builtin types, type classes and methods
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"""
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from typing import Any, Union
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from ..type3.functions import TypeVariable
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from ..type3.functions import (
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Constraint_TypeClassInstanceExists,
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TypeConstructorVariable,
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TypeVariable,
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)
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from ..type3.typeclasses import Type3Class
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from ..type3.types import (
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IntType3,
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Type3,
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TypeConstructor,
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TypeConstructor_StaticArray,
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TypeConstructor_Struct,
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TypeConstructor_Tuple,
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)
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PRELUDE_TYPE_CLASS_INSTANCES_EXISTING: set[tuple[Type3Class, tuple[Type3, ...]]] = set()
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PRELUDE_TYPE_CLASS_INSTANCES_EXISTING: set[tuple[Type3Class, tuple[Union[Type3, TypeConstructor[Any], TypeConstructor_Struct], ...]]] = set()
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def instance_type_class(cls: Type3Class, *typ: Type3) -> None:
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def instance_type_class(cls: Type3Class, *typ: Union[Type3, TypeConstructor[Any], TypeConstructor_Struct]) -> None:
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global PRELUDE_TYPE_CLASS_INSTANCES_EXISTING
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# TODO: Check for required existing instantiations
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@ -93,7 +100,7 @@ bytes_ = Type3('bytes')
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This is a runtime-determined length piece of memory that can be indexed at runtime.
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"""
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def sa_on_create(typ: Type3) -> None:
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def sa_on_create(args: tuple[Type3, IntType3], typ: Type3) -> None:
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instance_type_class(InternalPassAsPointer, typ)
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static_array = TypeConstructor_StaticArray('static_array', on_create=sa_on_create)
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@ -106,7 +113,7 @@ It should be applied with one argument. It has a runtime-dynamic length
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of the same type repeated.
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"""
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def tp_on_create(typ: Type3) -> None:
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def tp_on_create(args: tuple[Type3, ...], typ: Type3) -> None:
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instance_type_class(InternalPassAsPointer, typ)
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tuple_ = TypeConstructor_Tuple('tuple', on_create=tp_on_create)
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@ -143,6 +150,7 @@ PRELUDE_TYPES: dict[str, Type3] = {
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a = TypeVariable('a')
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b = TypeVariable('b')
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t = TypeConstructorVariable('t', [])
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InternalPassAsPointer = Type3Class('InternalPassAsPointer', [a], methods={}, operators={})
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"""
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@ -286,6 +294,14 @@ Promotable = Type3Class('Promotable', [a, b], methods={
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instance_type_class(Promotable, f32, f64)
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Foldable = Type3Class('Foldable', [t], methods={
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'sum': [t(a), a],
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}, operators={}, additional_context={
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'sum': [Constraint_TypeClassInstanceExists(NatNum, [a])],
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})
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instance_type_class(Foldable, static_array)
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PRELUDE_TYPE_CLASSES = {
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'Eq': Eq,
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'Ord': Ord,
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@ -321,4 +337,5 @@ PRELUDE_METHODS = {
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**Sized_.methods,
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**Extendable.methods,
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**Promotable.methods,
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**Foldable.methods,
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}
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@ -384,6 +384,50 @@ def __u8_rotr__(g: Generator, x: i32, r: i32) -> i32:
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return i32('return') # To satisfy mypy
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@func_wrapper()
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def __sa_i32_sum__(g: Generator, adr: i32, arlen: i32) -> i32:
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i32_size = 4
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s = i32('s')
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stop = i32('stop')
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# stop = adr + ar_len * i32_size
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g.local.get(adr)
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g.local.get(arlen)
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g.i32.const(i32_size)
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g.i32.mul()
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g.i32.add()
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g.local.set(stop)
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# sum = 0
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g.i32.const(0)
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g.local.set(s)
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with g.loop():
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# sum = sum + *adr
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g.local.get(adr)
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g.i32.load()
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g.local.get(s)
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g.i32.add()
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g.local.set(s)
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# adr = adr + i32_size
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g.local.get(adr)
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g.i32.const(i32_size)
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g.i32.add()
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g.local.tee(adr)
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# loop if adr < stop
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g.local.get(stop)
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g.i32.lt_u()
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g.br_if(0)
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# return sum
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g.local.get(s)
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g.return_()
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return i32('return') # To satisfy mypy
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## ###
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## class Eq
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@ -920,3 +964,11 @@ def f32_f64_promote(g: Generator) -> None:
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def f32_f64_demote(g: Generator) -> None:
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g.f32.demote_f64()
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def static_array_i32_4_sum(g: Generator) -> None:
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g.i32.const(4)
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g.add_statement('call $stdlib.types.__sa_i32_sum__')
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def static_array_i32_5_sum(g: Generator) -> None:
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g.i32.const(5)
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g.add_statement('call $stdlib.types.__sa_i32_sum__')
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@ -3,7 +3,7 @@ This module contains possible constraints generated based on the AST
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These need to be resolved before the program can be compiled.
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"""
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from typing import Dict, Iterable, List, Optional, Tuple, Union
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from typing import Any, Dict, Iterable, List, Optional, Tuple, Union
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from .. import ourlang, prelude
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from . import placeholders, typeclasses, types
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@ -49,7 +49,7 @@ class Context:
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__slots__ = ('type_class_instances_existing', )
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# Constraint_TypeClassInstanceExists
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type_class_instances_existing: set[tuple[typeclasses.Type3Class, tuple[types.Type3, ...]]]
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type_class_instances_existing: set[tuple[typeclasses.Type3Class, tuple[Union[types.Type3, types.TypeConstructor[Any], types.TypeConstructor_Struct], ...]]]
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def __init__(self) -> None:
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self.type_class_instances_existing = set()
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@ -50,16 +50,9 @@ def expression(ctx: Context, inp: ourlang.Expression, phft: placeholders.Placeho
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return
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if isinstance(inp, ourlang.BinaryOp) or isinstance(inp, ourlang.FunctionCall):
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signature = inp.operator.signature if isinstance(inp, ourlang.BinaryOp) else inp.function.signature
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arguments = [inp.left, inp.right] if isinstance(inp, ourlang.BinaryOp) else inp.arguments
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func_name = f'({inp.operator.name})' if isinstance(inp, ourlang.BinaryOp) else inp.function.name
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type_var_map = {
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x: placeholders.PlaceholderForType([])
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for x in signature.args
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if isinstance(x, functions.TypeVariable)
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}
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arguments = [inp.left, inp.right] if isinstance(inp, ourlang.BinaryOp) else inp.arguments
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arg_placeholders = {
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arg_expr: PlaceholderForType([arg_expr])
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@ -67,6 +60,17 @@ def expression(ctx: Context, inp: ourlang.Expression, phft: placeholders.Placeho
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}
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arg_placeholders[inp] = phft
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for call_arg in arguments:
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yield from expression(ctx, call_arg, arg_placeholders[call_arg])
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signature = inp.operator.signature if isinstance(inp, ourlang.BinaryOp) else inp.function.signature
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type_var_map = {
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x: placeholders.PlaceholderForType([])
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for x in signature.args
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if isinstance(x, functions.TypeVariable)
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or isinstance(x, functions.TypeConstructorVariable)
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}
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for arg_expr in arguments:
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yield from expression(ctx, arg_expr, arg_placeholders[arg_expr])
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@ -34,6 +34,25 @@ class TypeVariable:
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def __repr__(self) -> str:
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return f'TypeVariable({repr(self.letter)})'
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class TypeConstructorVariable:
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"""
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Types constructor variable are used in function definition.
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They are a lot like TypeVariable, except that they represent a
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type constructor rather than a type directly.
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"""
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__slots__ = ('letter', 'args', )
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def __init__(self, letter: str, args: Iterable[TypeVariable]) -> None:
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self.letter = letter
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self.args = list(args)
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def __call__(self, tvar: TypeVariable) -> 'TypeConstructorVariable':
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return TypeConstructorVariable(self.letter, self.args + [tvar])
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def __repr__(self) -> str:
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return f'TypeConstructorVariable({self.letter!r}, {self.args!r})'
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class ConstraintBase:
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__slots__ = ()
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@ -41,9 +60,9 @@ class Constraint_TypeClassInstanceExists(ConstraintBase):
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__slots__ = ('type_class3', 'types', )
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type_class3: 'Type3Class'
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types: list[TypeVariable]
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types: list[Union[TypeVariable, TypeConstructorVariable]]
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def __init__(self, type_class3: 'Type3Class', types: Iterable[TypeVariable]) -> None:
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def __init__(self, type_class3: 'Type3Class', types: Iterable[Union[TypeVariable, TypeConstructorVariable]]) -> None:
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self.type_class3 = type_class3
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self.types = list(types)
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@ -52,27 +71,22 @@ class Constraint_TypeClassInstanceExists(ConstraintBase):
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assert len(self.type_class3.args) == len(self.types)
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class TypeVariableContext:
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__slots__ = ('variables', 'constraints', )
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__slots__ = ('constraints', )
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variables: set[TypeVariable]
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constraints: list[ConstraintBase]
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def __init__(self) -> None:
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self.variables = set()
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self.constraints = []
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def __init__(self, constraints: Iterable[ConstraintBase] = ()) -> None:
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self.constraints = list(constraints)
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def __copy__(self) -> 'TypeVariableContext':
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result = TypeVariableContext()
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result.variables.update(self.variables)
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result.constraints.extend(self.constraints)
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return result
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return TypeVariableContext(self.constraints)
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class FunctionSignature:
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__slots__ = ('context', 'args', )
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context: TypeVariableContext
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args: List[Union['Type3', TypeVariable]]
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args: List[Union['Type3', TypeVariable, TypeConstructorVariable]]
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|
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def __init__(self, context: TypeVariableContext, args: Iterable[Union['Type3', TypeVariable]]) -> None:
|
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def __init__(self, context: TypeVariableContext, args: Iterable[Union['Type3', TypeVariable, TypeConstructorVariable]]) -> None:
|
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self.context = context.__copy__()
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self.args = list(args)
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||||
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@ -2,7 +2,9 @@ from typing import Dict, Iterable, List, Mapping, Optional, Union
|
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from .functions import (
|
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Constraint_TypeClassInstanceExists,
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ConstraintBase,
|
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FunctionSignature,
|
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TypeConstructorVariable,
|
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TypeVariable,
|
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TypeVariableContext,
|
||||
)
|
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@ -26,7 +28,7 @@ class Type3Class:
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__slots__ = ('name', 'args', 'methods', 'operators', 'inherited_classes', )
|
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|
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name: str
|
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args: List[TypeVariable]
|
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args: List[Union[TypeVariable, TypeConstructorVariable]]
|
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methods: Dict[str, Type3ClassMethod]
|
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operators: Dict[str, Type3ClassMethod]
|
||||
inherited_classes: List['Type3Class']
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@ -34,10 +36,11 @@ class Type3Class:
|
||||
def __init__(
|
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self,
|
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name: str,
|
||||
args: Iterable[TypeVariable],
|
||||
methods: Mapping[str, Iterable[Union[Type3, TypeVariable]]],
|
||||
operators: Mapping[str, Iterable[Union[Type3, TypeVariable]]],
|
||||
args: Iterable[Union[TypeVariable, TypeConstructorVariable]],
|
||||
methods: Mapping[str, Iterable[Union[Type3, TypeVariable, TypeConstructorVariable]]],
|
||||
operators: Mapping[str, Iterable[Union[Type3, TypeVariable, TypeConstructorVariable]]],
|
||||
inherited_classes: Optional[List['Type3Class']] = None,
|
||||
additional_context: Optional[Mapping[str, Iterable[ConstraintBase]]] = None,
|
||||
) -> None:
|
||||
self.name = name
|
||||
self.args = list(args)
|
||||
@ -55,5 +58,12 @@ class Type3Class:
|
||||
}
|
||||
self.inherited_classes = inherited_classes or []
|
||||
|
||||
if additional_context:
|
||||
for func_name, constraint_list in additional_context.items():
|
||||
func = self.methods.get(func_name) or self.operators.get(func_name)
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assert func is not None # type hint
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||||
|
||||
func.signature.context.constraints.extend(constraint_list)
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||||
|
||||
def __repr__(self) -> str:
|
||||
return self.name
|
||||
|
||||
@ -106,7 +106,7 @@ class TypeConstructor(Generic[T]):
|
||||
The name of the type constructor
|
||||
"""
|
||||
|
||||
on_create: Callable[[Type3], None]
|
||||
on_create: Callable[[T, Type3], None]
|
||||
"""
|
||||
Who to let know if a type is created
|
||||
"""
|
||||
@ -122,7 +122,7 @@ class TypeConstructor(Generic[T]):
|
||||
Sometimes we need to know the key that created a type.
|
||||
"""
|
||||
|
||||
def __init__(self, name: str, on_create: Callable[[Type3], None]) -> None:
|
||||
def __init__(self, name: str, on_create: Callable[[T, Type3], None]) -> None:
|
||||
self.name = name
|
||||
self.on_create = on_create
|
||||
|
||||
@ -152,7 +152,7 @@ class TypeConstructor(Generic[T]):
|
||||
if result is None:
|
||||
self._cache[key] = result = Type3(self.make_name(key))
|
||||
self._reverse_cache[result] = key
|
||||
self.on_create(result)
|
||||
self.on_create(key, result)
|
||||
|
||||
return result
|
||||
|
||||
|
||||
55
tests/integration/test_lang/test_foldable.py
Normal file
55
tests/integration/test_lang/test_foldable.py
Normal file
@ -0,0 +1,55 @@
|
||||
import pytest
|
||||
|
||||
from phasm.type3.entry import Type3Exception
|
||||
|
||||
from ..helpers import Suite
|
||||
|
||||
|
||||
@pytest.mark.integration_test
|
||||
def test_foldable_sum():
|
||||
code_py = """
|
||||
@exported
|
||||
def testEntry(x: i32[5]) -> i32:
|
||||
return sum(x)
|
||||
"""
|
||||
|
||||
result = Suite(code_py).run_code((4, 5, 6, 7, 8, ))
|
||||
|
||||
assert 30 == result.returned_value
|
||||
|
||||
@pytest.mark.integration_test
|
||||
def test_foldable_sum_not_natnum():
|
||||
code_py = """
|
||||
class Foo:
|
||||
bar: i32
|
||||
|
||||
@exported
|
||||
def testEntry(x: Foo[4]) -> Foo:
|
||||
return sum(x)
|
||||
"""
|
||||
|
||||
with pytest.raises(Type3Exception, match='Missing type class instantation: NatNum Foo'):
|
||||
Suite(code_py).run_code()
|
||||
|
||||
|
||||
@pytest.mark.integration_test
|
||||
def test_foldable_invalid_return_type():
|
||||
code_py = """
|
||||
@exported
|
||||
def testEntry(x: i32[5]) -> f64:
|
||||
return sum(x)
|
||||
"""
|
||||
|
||||
with pytest.raises(Type3Exception, match='f64 must be i32 instead'):
|
||||
Suite(code_py).run_code((4, 5, 6, 7, 8, ))
|
||||
|
||||
@pytest.mark.integration_test
|
||||
def test_foldable_not_foldable():
|
||||
code_py = """
|
||||
@exported
|
||||
def testEntry(x: i32) -> i32:
|
||||
return sum(x)
|
||||
"""
|
||||
|
||||
with pytest.raises(Type3Exception, match='Missing type class instantation: Foldable i32'):
|
||||
Suite(code_py).run_code()
|
||||
Loading…
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Reference in New Issue
Block a user