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f6cb1a8c1d
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6b66935c67
| Author | SHA1 | Date | |
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6b66935c67 | ||
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d9a08cf0f7 |
@ -6,7 +6,6 @@ It's intented to be a "any color, as long as it's black" kind of renderer
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from typing import Generator
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from . import ourlang, prelude
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from .type3.placeholders import TYPE3_ASSERTION_ERROR, Type3OrPlaceholder
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from .type3.types import Type3
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@ -18,12 +17,10 @@ def phasm_render(inp: ourlang.Module) -> str:
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Statements = Generator[str, None, None]
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def type3(inp: Type3OrPlaceholder) -> str:
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def type3(inp: Type3) -> str:
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"""
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Render: type's name
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"""
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assert isinstance(inp, Type3), TYPE3_ASSERTION_ERROR
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if inp is prelude.none:
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return 'None'
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@ -9,11 +9,12 @@ from .runtime import calculate_alloc_size, calculate_member_offset
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from .stdlib import alloc as stdlib_alloc
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from .stdlib import types as stdlib_types
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from .type3 import functions as type3functions
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from .type3 import placeholders as type3placeholders
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from .type3 import typeclasses as type3classes
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from .type3 import types as type3types
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from .wasmgenerator import Generator as WasmGenerator
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TYPE3_ASSERTION_ERROR = 'You must call phasm_type3 after calling phasm_parse before your program can be compiled'
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LOAD_STORE_TYPE_MAP = {
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'i8': 'i32', # Have to use an u32, since there is no native i8 type
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'u8': 'i32', # Have to use an u32, since there is no native u8 type
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@ -268,14 +269,14 @@ def phasm_compile(inp: ourlang.Module) -> wasm.Module:
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"""
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return module(inp)
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def type3(inp: type3placeholders.Type3OrPlaceholder) -> wasm.WasmType:
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def type3(inp: type3types.Type3) -> wasm.WasmType:
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"""
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Compile: type
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Types are used for example in WebAssembly function parameters
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and return types.
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"""
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assert isinstance(inp, type3types.Type3), type3placeholders.TYPE3_ASSERTION_ERROR
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assert inp is not None, TYPE3_ASSERTION_ERROR
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if inp == prelude.none:
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return wasm.WasmTypeNone()
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@ -327,7 +328,7 @@ def tuple_instantiation(wgn: WasmGenerator, inp: ourlang.TupleInstantiation) ->
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"""
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Compile: Instantiation (allocation) of a tuple
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"""
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assert isinstance(inp.type3, type3types.Type3)
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assert inp.type3 is not None, TYPE3_ASSERTION_ERROR
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args: list[type3types.Type3] = []
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@ -345,7 +346,7 @@ def tuple_instantiation(wgn: WasmGenerator, inp: ourlang.TupleInstantiation) ->
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comment_elements = ''
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for element in inp.elements:
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assert isinstance(element.type3, type3types.Type3), type3placeholders.TYPE3_ASSERTION_ERROR
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assert element.type3 is not None, TYPE3_ASSERTION_ERROR
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comment_elements += f'{element.type3.name}, '
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tmp_var = wgn.temp_var_i32('tuple_adr')
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@ -359,17 +360,11 @@ def tuple_instantiation(wgn: WasmGenerator, inp: ourlang.TupleInstantiation) ->
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# Store each element individually
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offset = 0
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for element, exp_type3 in zip(inp.elements, args, strict=True):
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if isinstance(exp_type3, type3placeholders.PlaceholderForType):
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assert exp_type3.resolve_as is not None
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assert isinstance(exp_type3.resolve_as, type3types.Type3)
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exp_type3 = exp_type3.resolve_as
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assert element.type3 == exp_type3
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if (prelude.InternalPassAsPointer, (exp_type3, )) in prelude.PRELUDE_TYPE_CLASS_INSTANCES_EXISTING:
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mtyp = 'i32'
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else:
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assert isinstance(exp_type3, type3types.Type3), NotImplementedError('Tuple of applied types / structs')
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mtyp = LOAD_STORE_TYPE_MAP[exp_type3.name]
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wgn.add_statement('nop', comment='PRE')
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@ -392,7 +387,7 @@ def expression(wgn: WasmGenerator, inp: ourlang.Expression) -> None:
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raise Exception
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if isinstance(inp, ourlang.ConstantPrimitive):
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assert isinstance(inp.type3, type3types.Type3), type3placeholders.TYPE3_ASSERTION_ERROR
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assert inp.type3 is not None, TYPE3_ASSERTION_ERROR
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if inp.type3 in (prelude.i8, prelude.u8, ):
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# No native u8 type - treat as i32, with caution
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@ -433,7 +428,7 @@ def expression(wgn: WasmGenerator, inp: ourlang.Expression) -> None:
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return
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if isinstance(inp.variable, ourlang.ModuleConstantDef):
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assert isinstance(inp.type3, type3types.Type3), type3placeholders.TYPE3_ASSERTION_ERROR
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assert inp.type3 is not None, TYPE3_ASSERTION_ERROR
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if (prelude.InternalPassAsPointer, (inp.type3, )) in prelude.PRELUDE_TYPE_CLASS_INSTANCES_EXISTING:
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assert isinstance(inp.variable.constant, (ourlang.ConstantBytes, ourlang.ConstantStruct, ourlang.ConstantTuple, ))
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@ -443,11 +438,8 @@ def expression(wgn: WasmGenerator, inp: ourlang.Expression) -> None:
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wgn.i32.const(address)
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return
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if isinstance(inp.type3, type3types.Type3):
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expression(wgn, inp.variable.constant)
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return
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raise NotImplementedError(expression, inp)
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expression(wgn, inp.variable.constant)
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return
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raise NotImplementedError(expression, inp.variable)
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@ -455,7 +447,7 @@ def expression(wgn: WasmGenerator, inp: ourlang.Expression) -> None:
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expression(wgn, inp.left)
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expression(wgn, inp.right)
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assert isinstance(inp.type3, type3types.Type3), type3placeholders.TYPE3_ASSERTION_ERROR
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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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@ -464,7 +456,7 @@ def expression(wgn: WasmGenerator, inp: ourlang.Expression) -> None:
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# Fixed type, not part of the lookup requirements
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continue
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assert isinstance(arg_expr.type3, type3types.Type3), type3placeholders.TYPE3_ASSERTION_ERROR
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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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instance_key = ','.join(
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@ -492,7 +484,7 @@ def expression(wgn: WasmGenerator, inp: ourlang.Expression) -> None:
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# Fixed type, not part of the lookup requirements
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continue
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assert isinstance(arg_expr.type3, type3types.Type3), type3placeholders.TYPE3_ASSERTION_ERROR
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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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instance_key = ','.join(
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@ -515,7 +507,7 @@ def expression(wgn: WasmGenerator, inp: ourlang.Expression) -> None:
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return
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if isinstance(inp, ourlang.Subscript):
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assert isinstance(inp.varref.type3, type3types.Type3), type3placeholders.TYPE3_ASSERTION_ERROR
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assert inp.varref.type3 is not None, TYPE3_ASSERTION_ERROR
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if inp.varref.type3 is prelude.bytes_:
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expression(wgn, inp.varref)
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@ -523,7 +515,7 @@ def expression(wgn: WasmGenerator, inp: ourlang.Expression) -> None:
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wgn.call(stdlib_types.__subscript_bytes__)
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return
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assert isinstance(inp.varref.type3, type3types.Type3)
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assert inp.varref.type3 is not None, TYPE3_ASSERTION_ERROR
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sa_args = prelude.static_array.did_construct(inp.varref.type3)
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if sa_args is not None:
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@ -549,7 +541,6 @@ def expression(wgn: WasmGenerator, inp: ourlang.Expression) -> None:
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wgn.i32.mul()
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wgn.i32.add()
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assert isinstance(el_type, type3types.Type3), NotImplementedError('Tuple of applied types / structs')
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mtyp = LOAD_STORE_TYPE_MAP[el_type.name]
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wgn.add_statement(f'{mtyp}.load')
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@ -562,18 +553,17 @@ def expression(wgn: WasmGenerator, inp: ourlang.Expression) -> None:
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offset = 0
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for el_type in tp_args[0:inp.index.value]:
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assert isinstance(el_type, type3types.Type3), type3placeholders.TYPE3_ASSERTION_ERROR
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assert el_type is not None, TYPE3_ASSERTION_ERROR
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offset += calculate_alloc_size(el_type)
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el_type = tp_args[inp.index.value]
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assert isinstance(el_type, type3types.Type3), type3placeholders.TYPE3_ASSERTION_ERROR
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assert el_type is not None, TYPE3_ASSERTION_ERROR
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expression(wgn, inp.varref)
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if (prelude.InternalPassAsPointer, (el_type, )) in prelude.PRELUDE_TYPE_CLASS_INSTANCES_EXISTING:
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mtyp = 'i32'
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else:
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assert isinstance(el_type, type3types.Type3), NotImplementedError('Tuple of applied types / structs')
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mtyp = LOAD_STORE_TYPE_MAP[el_type.name]
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wgn.add_statement(f'{mtyp}.load', f'offset={offset}')
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@ -582,14 +572,13 @@ def expression(wgn: WasmGenerator, inp: ourlang.Expression) -> None:
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raise NotImplementedError(expression, inp, inp.varref.type3)
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if isinstance(inp, ourlang.AccessStructMember):
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assert isinstance(inp.struct_type3, type3types.Type3), type3placeholders.TYPE3_ASSERTION_ERROR
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assert inp.struct_type3 is not None, TYPE3_ASSERTION_ERROR
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st_args = prelude.struct.did_construct(inp.struct_type3)
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assert st_args is not None
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member_type = st_args[inp.member]
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assert isinstance(member_type, type3types.Type3), NotImplementedError('Tuple of applied types / structs')
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mtyp = LOAD_STORE_TYPE_MAP[member_type.name]
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expression(wgn, inp.varref)
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@ -608,7 +597,7 @@ def expression_fold(wgn: WasmGenerator, inp: ourlang.Fold) -> None:
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"""
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Compile: Fold expression
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"""
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assert isinstance(inp.type3, type3types.Type3), type3placeholders.TYPE3_ASSERTION_ERROR
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assert inp.type3 is not None, TYPE3_ASSERTION_ERROR
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if inp.iter.type3 is not prelude.bytes_:
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raise NotImplementedError(expression_fold, inp, inp.iter.type3)
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@ -839,7 +828,7 @@ def module_data(inp: ourlang.ModuleData) -> bytes:
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data_list: List[bytes] = []
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for constant in block.data:
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assert isinstance(constant.type3, type3types.Type3), (id(constant), type3placeholders.TYPE3_ASSERTION_ERROR)
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assert constant.type3 is not None, TYPE3_ASSERTION_ERROR
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if isinstance(constant, ourlang.ConstantMemoryStored) and block is not constant.data_block:
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# It's stored in a different block
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@ -6,7 +6,6 @@ from typing import Dict, Iterable, List, Optional, Union
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from . import prelude
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from .type3.functions import FunctionSignature, TypeVariableContext
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from .type3.placeholders import PlaceholderForType, Type3OrPlaceholder
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from .type3.typeclasses import Type3ClassMethod
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from .type3.types import Type3
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@ -17,10 +16,10 @@ class Expression:
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"""
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__slots__ = ('type3', )
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type3: Type3OrPlaceholder
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type3: Type3 | None
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def __init__(self) -> None:
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self.type3 = PlaceholderForType([self])
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self.type3 = None
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class Constant(Expression):
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"""
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@ -198,10 +197,10 @@ class AccessStructMember(Expression):
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__slots__ = ('varref', 'struct_type3', 'member', )
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varref: VariableReference
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struct_type3: Type3OrPlaceholder
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struct_type3: Type3
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member: str
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def __init__(self, varref: VariableReference, struct_type3: Type3OrPlaceholder, member: str) -> None:
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def __init__(self, varref: VariableReference, struct_type3: Type3, member: str) -> None:
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super().__init__()
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self.varref = varref
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@ -284,7 +283,7 @@ class FunctionParam:
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__slots__ = ('name', 'type3', )
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name: str
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type3: Type3OrPlaceholder
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type3: Type3
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def __init__(self, name: str, type3: Type3) -> None:
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self.name = name
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@ -163,8 +163,8 @@ class OurVisitor:
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arg_type = self.visit_type(module, arg.annotation)
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# if isisntance(arg_type, TypeVariable):
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# arg_type = PlaceHolderForType()
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# FIXME: Allow TypeVariable in the function signature
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# This would also require FunctionParam to accept a placeholder
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function.signature.args.append(arg_type)
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function.posonlyargs.append(FunctionParam(
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@ -3,10 +3,11 @@ 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, List, Optional, Tuple, Union
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from typing import 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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from .placeholders import PlaceholderForType
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class Error:
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@ -157,7 +158,7 @@ class SameTypeConstraint(ConstraintBase):
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return f'SameTypeConstraint({args}, comment={repr(self.comment)})'
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class TupleMatchConstraint(ConstraintBase):
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def __init__(self, exp_type: placeholders.Type3OrPlaceholder, args: List[placeholders.Type3OrPlaceholder], comment: str):
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def __init__(self, exp_type: placeholders.Type3OrPlaceholder, args: Iterable[placeholders.Type3OrPlaceholder], comment: str):
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super().__init__(comment=comment)
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self.exp_type = exp_type
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@ -348,8 +349,12 @@ class LiteralFitsConstraint(ConstraintBase):
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LiteralFitsConstraint(x, y)
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for x, y in zip(tp_args, self.literal.value, strict=True)
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)
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# Generate placeholders so each Literal expression
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# gets updated when we figure out the type of the
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# expression the literal is used in
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res.extend(
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SameTypeConstraint(x, y.type3)
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SameTypeConstraint(x, PlaceholderForType([y]))
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for x, y in zip(tp_args, self.literal.value, strict=True)
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)
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@ -371,8 +376,12 @@ class LiteralFitsConstraint(ConstraintBase):
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LiteralFitsConstraint(sa_type, y)
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for y in self.literal.value
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)
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# Generate placeholders so each Literal expression
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# gets updated when we figure out the type of the
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# expression the literal is used in
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res.extend(
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SameTypeConstraint(sa_type, y.type3)
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SameTypeConstraint(sa_type, PlaceholderForType([y]))
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for y in self.literal.value
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)
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@ -396,8 +405,12 @@ class LiteralFitsConstraint(ConstraintBase):
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LiteralFitsConstraint(x, y)
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for x, y in zip(st_args.values(), self.literal.value, strict=True)
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)
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# Generate placeholders so each Literal expression
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# gets updated when we figure out the type of the
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# expression the literal is used in
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res.extend(
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SameTypeConstraint(x_t, y.type3, comment=f'{self.literal.struct_name}.{x_n}')
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SameTypeConstraint(x_t, PlaceholderForType([y]), comment=f'{self.literal.struct_name}.{x_n}')
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for (x_n, x_t, ), y in zip(st_args.items(), self.literal.value, strict=True)
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)
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@ -421,20 +434,27 @@ class CanBeSubscriptedConstraint(ConstraintBase):
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"""
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A value that is subscipted, i.e. a[0] (tuple) or a[b] (static array)
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"""
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__slots__ = ('ret_type3', 'type3', 'index', 'index_type3', )
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__slots__ = ('ret_type3', 'type3', 'index', 'index_phft', )
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ret_type3: placeholders.Type3OrPlaceholder
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type3: placeholders.Type3OrPlaceholder
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index: ourlang.Expression
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index_type3: placeholders.Type3OrPlaceholder
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index_phft: placeholders.Type3OrPlaceholder
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def __init__(self, ret_type3: placeholders.Type3OrPlaceholder, type3: placeholders.Type3OrPlaceholder, index: ourlang.Expression, comment: Optional[str] = None) -> None:
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def __init__(
|
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self,
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ret_type3: placeholders.PlaceholderForType,
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type3: placeholders.PlaceholderForType,
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index: ourlang.Expression,
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index_phft: placeholders.PlaceholderForType,
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comment: Optional[str] = None,
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) -> None:
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super().__init__(comment=comment)
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self.ret_type3 = ret_type3
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self.type3 = type3
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self.index = index
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self.index_type3 = index.type3
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self.index_phft = index_phft
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def check(self) -> CheckResult:
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exp_type = self.type3
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@ -451,7 +471,7 @@ class CanBeSubscriptedConstraint(ConstraintBase):
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sa_type, sa_len = sa_args
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result: List[ConstraintBase] = [
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SameTypeConstraint(prelude.u32, self.index_type3, comment='([]) :: Subscriptable a => a b -> u32 -> b'),
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SameTypeConstraint(prelude.u32, self.index_phft, comment='([]) :: Subscriptable a => a b -> u32 -> b'),
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SameTypeConstraint(sa_type, self.ret_type3, comment='([]) :: Subscriptable a => a b -> u32 -> b'),
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]
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||||
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@ -478,13 +498,13 @@ class CanBeSubscriptedConstraint(ConstraintBase):
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return Error('Tuple index out of range')
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||||
|
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return [
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SameTypeConstraint(prelude.u32, self.index_type3, comment=f'Tuple subscript index {self.index.value}'),
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SameTypeConstraint(prelude.u32, self.index_phft, comment=f'Tuple subscript index {self.index.value}'),
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SameTypeConstraint(tp_args[self.index.value], self.ret_type3, comment=f'Tuple subscript index {self.index.value}'),
|
||||
]
|
||||
|
||||
if exp_type is prelude.bytes_:
|
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return [
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SameTypeConstraint(prelude.u32, self.index_type3, comment='([]) :: bytes -> u32 -> u8'),
|
||||
SameTypeConstraint(prelude.u32, self.index_phft, comment='([]) :: bytes -> u32 -> u8'),
|
||||
SameTypeConstraint(prelude.u8, self.ret_type3, comment='([]) :: bytes -> u32 -> u8'),
|
||||
]
|
||||
|
||||
|
||||
@ -19,6 +19,7 @@ from .constraints import (
|
||||
SameTypeConstraint,
|
||||
TupleMatchConstraint,
|
||||
)
|
||||
from .placeholders import PlaceholderForType
|
||||
|
||||
ConstraintGenerator = Generator[ConstraintBase, None, None]
|
||||
|
||||
@ -28,23 +29,23 @@ def phasm_type3_generate_constraints(inp: ourlang.Module) -> List[ConstraintBase
|
||||
|
||||
return [*module(ctx, inp)]
|
||||
|
||||
def constant(ctx: Context, inp: ourlang.Constant) -> ConstraintGenerator:
|
||||
def constant(ctx: Context, inp: ourlang.Constant, phft: placeholders.PlaceholderForType) -> ConstraintGenerator:
|
||||
if isinstance(inp, (ourlang.ConstantPrimitive, ourlang.ConstantBytes, ourlang.ConstantTuple, ourlang.ConstantStruct)):
|
||||
yield LiteralFitsConstraint(
|
||||
inp.type3, inp,
|
||||
phft, inp,
|
||||
comment='The given literal must fit the expected type'
|
||||
)
|
||||
return
|
||||
|
||||
raise NotImplementedError(constant, inp)
|
||||
|
||||
def expression(ctx: Context, inp: ourlang.Expression) -> ConstraintGenerator:
|
||||
def expression(ctx: Context, inp: ourlang.Expression, phft: placeholders.PlaceholderForType) -> ConstraintGenerator:
|
||||
if isinstance(inp, ourlang.Constant):
|
||||
yield from constant(ctx, inp)
|
||||
yield from constant(ctx, inp, phft)
|
||||
return
|
||||
|
||||
if isinstance(inp, ourlang.VariableReference):
|
||||
yield SameTypeConstraint(inp.variable.type3, inp.type3,
|
||||
yield SameTypeConstraint(inp.variable.type3, phft,
|
||||
comment=f'typeOf("{inp.variable.name}") == typeOf({inp.variable.name})')
|
||||
return
|
||||
|
||||
@ -60,8 +61,14 @@ def expression(ctx: Context, inp: ourlang.Expression) -> ConstraintGenerator:
|
||||
if isinstance(x, functions.TypeVariable)
|
||||
}
|
||||
|
||||
for call_arg in arguments:
|
||||
yield from expression(ctx, call_arg)
|
||||
arg_placeholders = {
|
||||
arg_expr: PlaceholderForType([arg_expr])
|
||||
for arg_expr in arguments
|
||||
}
|
||||
arg_placeholders[inp] = phft
|
||||
|
||||
for arg_expr in arguments:
|
||||
yield from expression(ctx, arg_expr, arg_placeholders[arg_expr])
|
||||
|
||||
for constraint in signature.context.constraints:
|
||||
if isinstance(constraint, functions.Constraint_TypeClassInstanceExists):
|
||||
@ -81,11 +88,11 @@ def expression(ctx: Context, inp: ourlang.Expression) -> ConstraintGenerator:
|
||||
comment = f'The type of the value passed to argument {arg_no} of function {func_name} should match the type of that argument'
|
||||
|
||||
if isinstance(sig_part, functions.TypeVariable):
|
||||
yield SameTypeConstraint(type_var_map[sig_part], arg_expr.type3, comment=comment)
|
||||
yield SameTypeConstraint(type_var_map[sig_part], arg_placeholders[arg_expr], comment=comment)
|
||||
continue
|
||||
|
||||
if isinstance(sig_part, type3types.Type3):
|
||||
yield SameTypeConstraint(sig_part, arg_expr.type3, comment=comment)
|
||||
yield SameTypeConstraint(sig_part, arg_placeholders[arg_expr], comment=comment)
|
||||
continue
|
||||
|
||||
raise NotImplementedError(sig_part)
|
||||
@ -94,11 +101,12 @@ def expression(ctx: Context, inp: ourlang.Expression) -> ConstraintGenerator:
|
||||
if isinstance(inp, ourlang.TupleInstantiation):
|
||||
r_type = []
|
||||
for arg in inp.elements:
|
||||
yield from expression(ctx, arg)
|
||||
r_type.append(arg.type3)
|
||||
arg_phft = PlaceholderForType([arg])
|
||||
yield from expression(ctx, arg, arg_phft)
|
||||
r_type.append(arg_phft)
|
||||
|
||||
yield TupleMatchConstraint(
|
||||
inp.type3,
|
||||
phft,
|
||||
r_type,
|
||||
comment='The type of a tuple is a combination of its members'
|
||||
)
|
||||
@ -106,10 +114,13 @@ def expression(ctx: Context, inp: ourlang.Expression) -> ConstraintGenerator:
|
||||
return
|
||||
|
||||
if isinstance(inp, ourlang.Subscript):
|
||||
yield from expression(ctx, inp.varref)
|
||||
yield from expression(ctx, inp.index)
|
||||
varref_phft = PlaceholderForType([inp.varref])
|
||||
index_phft = PlaceholderForType([inp.index])
|
||||
|
||||
yield CanBeSubscriptedConstraint(inp.type3, inp.varref.type3, inp.index)
|
||||
yield from expression(ctx, inp.varref, varref_phft)
|
||||
yield from expression(ctx, inp.index, index_phft)
|
||||
|
||||
yield CanBeSubscriptedConstraint(phft, varref_phft, inp.index, index_phft)
|
||||
return
|
||||
|
||||
if isinstance(inp, ourlang.AccessStructMember):
|
||||
@ -117,33 +128,40 @@ def expression(ctx: Context, inp: ourlang.Expression) -> ConstraintGenerator:
|
||||
st_args = prelude.struct.did_construct(inp.struct_type3)
|
||||
assert st_args is not None # FIXME: See test_struct.py::test_struct_not_accessible
|
||||
|
||||
yield from expression(ctx, inp.varref)
|
||||
yield SameTypeConstraint(st_args[inp.member], inp.type3,
|
||||
yield from expression(ctx, inp.varref, PlaceholderForType([inp.varref])) # TODO
|
||||
yield SameTypeConstraint(st_args[inp.member], phft,
|
||||
comment=f'The type of a struct member reference is the same as the type of struct member {inp.struct_type3.name}.{inp.member}')
|
||||
return
|
||||
|
||||
if isinstance(inp, ourlang.Fold):
|
||||
yield from expression(ctx, inp.base)
|
||||
yield from expression(ctx, inp.iter)
|
||||
base_phft = PlaceholderForType([inp.base])
|
||||
iter_phft = PlaceholderForType([inp.iter])
|
||||
|
||||
yield SameTypeConstraint(inp.func.posonlyargs[0].type3, inp.func.returns_type3, inp.base.type3, inp.type3,
|
||||
yield from expression(ctx, inp.base, base_phft)
|
||||
yield from expression(ctx, inp.iter, iter_phft)
|
||||
|
||||
yield SameTypeConstraint(inp.func.posonlyargs[0].type3, inp.func.returns_type3, base_phft, phft,
|
||||
comment='foldl :: Foldable t => (b -> a -> b) -> b -> t a -> b')
|
||||
yield MustImplementTypeClassConstraint(ctx, 'Foldable', [inp.iter.type3])
|
||||
yield MustImplementTypeClassConstraint(ctx, 'Foldable', [iter_phft])
|
||||
|
||||
return
|
||||
|
||||
raise NotImplementedError(expression, inp)
|
||||
|
||||
def statement_return(ctx: Context, fun: ourlang.Function, inp: ourlang.StatementReturn) -> ConstraintGenerator:
|
||||
yield from expression(ctx, inp.value)
|
||||
phft = PlaceholderForType([inp.value])
|
||||
|
||||
yield SameTypeConstraint(fun.returns_type3, inp.value.type3,
|
||||
yield from expression(ctx, inp.value, phft)
|
||||
|
||||
yield SameTypeConstraint(fun.returns_type3, phft,
|
||||
comment=f'The type of the value returned from function {fun.name} should match its return type')
|
||||
|
||||
def statement_if(ctx: Context, fun: ourlang.Function, inp: ourlang.StatementIf) -> ConstraintGenerator:
|
||||
yield from expression(ctx, inp.test)
|
||||
test_phft = PlaceholderForType([inp.test])
|
||||
|
||||
yield SameTypeConstraint(inp.test.type3, prelude.bool_,
|
||||
yield from expression(ctx, inp.test, test_phft)
|
||||
|
||||
yield SameTypeConstraint(test_phft, prelude.bool_,
|
||||
comment='Must pass a boolean expression to if')
|
||||
|
||||
for stmt in inp.statements:
|
||||
@ -173,8 +191,10 @@ def function(ctx: Context, inp: ourlang.Function) -> ConstraintGenerator:
|
||||
yield from statement(ctx, inp, stmt)
|
||||
|
||||
def module_constant_def(ctx: Context, inp: ourlang.ModuleConstantDef) -> ConstraintGenerator:
|
||||
yield from constant(ctx, inp.constant)
|
||||
yield SameTypeConstraint(inp.type3, inp.constant.type3,
|
||||
phft = PlaceholderForType([inp.constant])
|
||||
|
||||
yield from constant(ctx, inp.constant, phft)
|
||||
yield SameTypeConstraint(inp.type3, phft,
|
||||
comment=f'The type of the value for module constant definition {inp.name} should match the type of that constant')
|
||||
|
||||
def module(ctx: Context, inp: ourlang.Module) -> ConstraintGenerator:
|
||||
|
||||
@ -115,8 +115,6 @@ def phasm_type3(inp: ourlang.Module, verbose: bool = False) -> None:
|
||||
# FIXME: This doesn't work with e.g. `:: [a] -> a`, as the placeholder is inside a type
|
||||
for plh, typ in placeholder_substitutes.items():
|
||||
for expr in plh.update_on_substitution:
|
||||
assert expr.type3 is plh
|
||||
|
||||
expr.type3 = typ
|
||||
|
||||
def print_constraint(placeholder_id_map: Dict[int, str], constraint: ConstraintBase) -> None:
|
||||
|
||||
@ -7,14 +7,13 @@ from typing import Any, Iterable, List, Optional, Protocol, Union
|
||||
|
||||
from .types import Type3
|
||||
|
||||
TYPE3_ASSERTION_ERROR = 'You must call phasm_type3 after calling phasm_parse before you can call any other method'
|
||||
|
||||
class ExpressionProtocol(Protocol):
|
||||
"""
|
||||
A protocol for classes that should be updated on substitution
|
||||
"""
|
||||
|
||||
type3: 'Type3OrPlaceholder'
|
||||
type3: Type3 | None
|
||||
"""
|
||||
The type to update
|
||||
"""
|
||||
|
||||
@ -5,7 +5,6 @@ from typing import Any, Generator, Iterable, List, TextIO, Union
|
||||
from phasm import compiler, prelude
|
||||
from phasm.codestyle import phasm_render
|
||||
from phasm.runtime import calculate_alloc_size
|
||||
from phasm.type3 import placeholders as type3placeholders
|
||||
from phasm.type3 import types as type3types
|
||||
|
||||
from . import runners
|
||||
@ -65,9 +64,6 @@ class Suite:
|
||||
runner.interpreter_dump_memory(sys.stderr)
|
||||
|
||||
for arg, arg_typ in zip(args, func_args, strict=True):
|
||||
assert not isinstance(arg_typ, type3placeholders.PlaceholderForType), \
|
||||
'Cannot call polymorphic function from outside'
|
||||
|
||||
if arg_typ in (prelude.u8, prelude.u32, prelude.u64, ):
|
||||
assert isinstance(arg, int)
|
||||
wasm_args.append(arg)
|
||||
@ -88,7 +84,6 @@ class Suite:
|
||||
wasm_args.append(adr)
|
||||
continue
|
||||
|
||||
assert isinstance(arg_typ, type3types.Type3)
|
||||
sa_args = prelude.static_array.did_construct(arg_typ)
|
||||
if sa_args is not None:
|
||||
adr = _allocate_memory_stored_value(runner, arg_typ, arg)
|
||||
@ -222,8 +217,6 @@ def _allocate_memory_stored_value(
|
||||
|
||||
offset = adr
|
||||
for val_el_val, val_el_typ in zip(val, tp_args, strict=True):
|
||||
assert not isinstance(val_el_typ, type3placeholders.PlaceholderForType)
|
||||
|
||||
offset += _write_memory_stored_value(runner, offset, val_el_typ, val_el_val)
|
||||
return adr
|
||||
|
||||
@ -240,8 +233,6 @@ def _allocate_memory_stored_value(
|
||||
|
||||
offset = adr
|
||||
for val_el_name, val_el_typ in st_args.items():
|
||||
assert not isinstance(val_el_typ, type3placeholders.PlaceholderForType)
|
||||
|
||||
val_el_val = val[val_el_name]
|
||||
offset += _write_memory_stored_value(runner, offset, val_el_typ, val_el_val)
|
||||
return adr
|
||||
@ -299,8 +290,6 @@ def _load_memory_stored_returned_value(
|
||||
|
||||
return _load_bytes_from_address(runner, ret_type3, wasm_value)
|
||||
|
||||
assert isinstance(ret_type3, type3types.Type3) # Type hint
|
||||
|
||||
sa_args = prelude.static_array.did_construct(ret_type3)
|
||||
if sa_args is not None:
|
||||
assert isinstance(wasm_value, int), wasm_value
|
||||
@ -366,8 +355,6 @@ def _unpack(runner: runners.RunnerBase, typ: type3types.Type3, inp: bytes) -> An
|
||||
assert len(inp) == 4
|
||||
adr = struct.unpack('<I', inp)[0]
|
||||
|
||||
assert isinstance(typ, type3types.Type3)
|
||||
|
||||
sa_args = prelude.static_array.did_construct(typ)
|
||||
if sa_args is not None:
|
||||
sa_type, sa_len = sa_args
|
||||
@ -404,9 +391,6 @@ def _split_read_bytes(all_bytes: bytes, split_sizes: Iterable[int]) -> Generator
|
||||
def _load_static_array_from_address(runner: runners.RunnerBase, sub_typ: type3types.Type3, len_typ: type3types.IntType3, adr: int) -> Any:
|
||||
sys.stderr.write(f'Reading 0x{adr:08x} {sub_typ:s} {len_typ:s}\n')
|
||||
|
||||
assert not isinstance(sub_typ, type3placeholders.PlaceholderForType)
|
||||
assert isinstance(len_typ, type3types.IntType3)
|
||||
|
||||
sa_len = len_typ.value
|
||||
|
||||
arg_size_1 = calculate_alloc_size(sub_typ, is_member=True)
|
||||
|
||||
@ -6,7 +6,20 @@ from ..helpers import Suite
|
||||
|
||||
|
||||
@pytest.mark.integration_test
|
||||
def test_expr_constant_literal_does_not_fit():
|
||||
def test_expr_constant_literal_does_not_fit_module_constant():
|
||||
code_py = """
|
||||
CONSTANT: u8 = 1000
|
||||
|
||||
@exported
|
||||
def testEntry() -> u8:
|
||||
return CONSTANT
|
||||
"""
|
||||
|
||||
with pytest.raises(Type3Exception, match=r'Must fit in 1 byte\(s\)'):
|
||||
Suite(code_py).run_code()
|
||||
|
||||
@pytest.mark.integration_test
|
||||
def test_expr_constant_literal_does_not_fit_return():
|
||||
code_py = """
|
||||
@exported
|
||||
def testEntry() -> u8:
|
||||
|
||||
Loading…
x
Reference in New Issue
Block a user