Ejemplo n.º 1
0
    def run_case(self, testcase: DataDrivenTestCase) -> None:
        """Perform a runtime checking transformation test case."""
        with use_custom_builtins(
                os.path.join(self.data_prefix, ICODE_GEN_BUILTINS), testcase):
            expected_output = remove_comment_lines(testcase.output)
            try:
                ir = build_ir_for_single_file(testcase.input)
            except CompileError as e:
                actual = e.messages
            else:
                actual = []
                for fn in ir:
                    if (fn.name == TOP_LEVEL_NAME
                            and not testcase.name.endswith('_toplevel')):
                        continue
                    insert_uninit_checks(fn)
                    insert_exception_handling(fn)
                    insert_ref_count_opcodes(fn)
                    actual.extend(format_func(fn))
                    if testcase.name.endswith('_freq'):
                        common = frequently_executed_blocks(fn.blocks[0])
                        actual.append('hot blocks: %s' %
                                      sorted(b.label for b in common))

            assert_test_output(testcase, actual, 'Invalid source code output',
                               expected_output)
Ejemplo n.º 2
0
def generate_native_function(fn: FuncIR, emitter: Emitter, source_path: str,
                             module_name: str) -> None:
    declarations = Emitter(emitter.context)
    names = generate_names_for_ir(fn.arg_regs, fn.blocks)
    body = Emitter(emitter.context, names)
    visitor = FunctionEmitterVisitor(body, declarations, source_path,
                                     module_name)

    declarations.emit_line(f'{native_function_header(fn.decl, emitter)} {{')
    body.indent()

    for r in all_values(fn.arg_regs, fn.blocks):
        if isinstance(r.type, RTuple):
            emitter.declare_tuple_struct(r.type)
        if isinstance(r.type, RArray):
            continue  # Special: declared on first assignment

        if r in fn.arg_regs:
            continue  # Skip the arguments

        ctype = emitter.ctype_spaced(r.type)
        init = ''
        declarations.emit_line('{ctype}{prefix}{name}{init};'.format(
            ctype=ctype, prefix=REG_PREFIX, name=names[r], init=init))

    # Before we emit the blocks, give them all labels
    blocks = fn.blocks
    for i, block in enumerate(blocks):
        block.label = i

    common = frequently_executed_blocks(fn.blocks[0])

    for i in range(len(blocks)):
        block = blocks[i]
        visitor.rare = block not in common
        next_block = None
        if i + 1 < len(blocks):
            next_block = blocks[i + 1]
        body.emit_label(block)
        visitor.next_block = next_block

        ops = block.ops
        visitor.ops = ops
        visitor.op_index = 0
        while visitor.op_index < len(ops):
            ops[visitor.op_index].accept(visitor)
            visitor.op_index += 1

    body.emit_line('}')

    emitter.emit_from_emitter(declarations)
    emitter.emit_from_emitter(body)