import unittest from modelverse_kernel.main import ModelverseKernel from utils import execute_until_finished, MvSWrapper, get_inst, get_phase, get_returnvalue, get_phase_ref, read_primitive_interfaces class TestInteger(unittest.TestCase): def setUp(self): self.mvs = MvSWrapper() self.root = self.mvs.execute("RR", [])[0] self.mvk = ModelverseKernel(self.root) self.task_root = self.mvs.execute("CN", [])[0] self.task_frame = self.mvs.execute("CN", [])[0] self.symbols = self.mvs.execute("CN", [])[0] self.evalstack = self.mvs.execute("CN", [])[0] self.returnvalue = self.mvs.execute("CN", [])[0] self.phase = self.mvs.execute("CNV", ["init"])[0] self.mvs.execute("CD", [self.root, "task_1", self.task_root]) self.mvs.execute("CD", [self.task_root, "frame", self.task_frame]) self.mvs.execute("CD", [self.task_frame, "symbols", self.symbols]) self.mvs.execute("CD", [self.task_frame, "evalstack", self.evalstack]) self.mvs.execute("CD", [self.task_frame, "phase", self.phase]) self.mvs.execute("CD", [self.task_frame, "returnvalue", self.returnvalue]) execute_until_finished(self.mvk, self.mvs, "load_primitives", []) self.primitives = read_primitive_interfaces(self.root, self.mvs) def test_addition(self): self.helper_primitives_2_params("float_addition", 2.4, 5.8, 8.2) def test_subtraction(self): self.helper_primitives_2_params("float_subtraction", 2.4, 5.8, -3.4) def test_multiplication(self): self.helper_primitives_2_params("float_multiplication", 2.4, 5.8, 13.92) def test_division(self): self.helper_primitives_2_params("float_division", 5.8, 2.4, 5.8/2.4) def test_gt_less(self): self.helper_primitives_2_params("float_gt", 2.4, 5.8, False) def test_gt_eq(self): self.helper_primitives_2_params("float_gt", 2.4, 2.4, False) def test_gt_greater(self): self.helper_primitives_2_params("float_gt", 5.8, 2.4, True) def test_lt_less(self): self.helper_primitives_2_params("float_lt", 2.4, 5.8, True) def test_lt_eq(self): self.helper_primitives_2_params("float_lt", 2.4, 2.4, False) def test_lt_greater(self): self.helper_primitives_2_params("float_lt", 5.8, 2.4, False) def test_eq_diff(self): self.helper_primitives_2_params("value_eq", 2.4, 5.8, False) def test_eq_eq(self): self.helper_primitives_2_params("value_eq", 2.4, 2.4, True) def test_neq_diff(self): self.helper_primitives_2_params("value_neq", 2.4, 5.8, True) def test_neq_eq(self): self.helper_primitives_2_params("value_neq", 2.4, 2.4, False) def test_neg_pos(self): self.helper_primitives_1_params("float_neg", 5.8, -5.8) def test_neg_neg(self): self.helper_primitives_1_params("float_neg", -5.8, 5.8) def test_neg_zero(self): self.helper_primitives_1_params("float_neg", 0.0, 0.0) def helper_primitives_2_params(self, operation, a, b, result): self.actual_arg_a = self.mvs.execute("CN", [])[0] self.actual_arg_b = self.mvs.execute("CN", [])[0] self.inst = self.mvs.execute("CNV", [{"value":"call"}])[0] self.const_a = self.mvs.execute("CNV", [{"value":"constant"}])[0] self.const_b = self.mvs.execute("CNV", [{"value":"constant"}])[0] self.const_c = self.mvs.execute("CNV", [{"value":"constant"}])[0] self.const_first = self.mvs.execute("CNV", [{"value":"constant"}])[0] self.const_second = self.mvs.execute("CNV", [{"value":"constant"}])[0] self.value_a = self.mvs.execute("CNV", ["a"])[0] self.value_b = self.mvs.execute("CNV", ["b"])[0] self.value_c = self.mvs.execute("CNV", ["c"])[0] self.value_first = self.mvs.execute("CNV", [a])[0] self.value_second = self.mvs.execute("CNV", [b])[0] self.mvs.execute("CD", [self.task_frame, "IP", self.inst]) self.const_func = self.mvs.execute("CNV", [{"value":"constant"}])[0] self.mvs.execute("CD", [self.inst, "func", self.const_func]) self.mvs.execute("CD", [self.const_func, "node", self.primitives[operation]]) self.mvs.execute("CD", [self.inst, "next", self.const_c]) self.mvs.execute("CD", [self.inst, "params", self.actual_arg_a]) self.mvs.execute("CD", [self.actual_arg_a, "next_param", self.actual_arg_b]) self.mvs.execute("CD", [self.inst, "last_param", self.actual_arg_b]) self.mvs.execute("CD", [self.actual_arg_a, "value", self.const_first]) self.mvs.execute("CD", [self.actual_arg_b, "value", self.const_second]) self.mvs.execute("CD", [self.actual_arg_a, "name", self.value_a]) self.mvs.execute("CD", [self.actual_arg_b, "name", self.value_b]) self.mvs.execute("CD", [self.const_a, "node", self.value_a]) self.mvs.execute("CD", [self.const_b, "node", self.value_b]) self.mvs.execute("CD", [self.const_c, "node", self.value_c]) self.mvs.execute("CD", [self.const_first, "node", self.value_first]) self.mvs.execute("CD", [self.const_second, "node", self.value_second]) ### Execute rules self.assertEquals(get_inst(self.root, self.mvs), "call") self.assertEquals(get_phase(self.root, self.mvs), "init") execute_until_finished(self.mvk, self.mvs) self.assertEquals(get_inst(self.root, self.mvs), "constant") self.assertEquals(get_phase(self.root, self.mvs), "init") execute_until_finished(self.mvk, self.mvs) self.assertEquals(get_inst(self.root, self.mvs), "constant") self.assertEquals(get_phase(self.root, self.mvs), "finish") execute_until_finished(self.mvk, self.mvs) self.assertEquals(get_inst(self.root, self.mvs), "call") self.assertEquals(get_phase_ref(self.root, self.mvs), self.actual_arg_a) execute_until_finished(self.mvk, self.mvs) self.assertEquals(get_inst(self.root, self.mvs), "constant") self.assertEquals(get_phase(self.root, self.mvs), "init") execute_until_finished(self.mvk, self.mvs) self.assertEquals(get_inst(self.root, self.mvs), "constant") self.assertEquals(get_phase(self.root, self.mvs), "finish") self.assertEquals(get_returnvalue(self.root, self.mvs), a) execute_until_finished(self.mvk, self.mvs) self.assertEquals(get_inst(self.root, self.mvs), "call") self.assertEquals(get_phase_ref(self.root, self.mvs), self.actual_arg_b) execute_until_finished(self.mvk, self.mvs) self.assertEquals(get_inst(self.root, self.mvs), "constant") self.assertEquals(get_phase(self.root, self.mvs), "init") execute_until_finished(self.mvk, self.mvs) self.assertEquals(get_inst(self.root, self.mvs), "constant") self.assertEquals(get_phase(self.root, self.mvs), "finish") self.assertEquals(get_returnvalue(self.root, self.mvs), b) execute_until_finished(self.mvk, self.mvs) self.assertEquals(get_inst(self.root, self.mvs), "call") self.assertEquals(get_phase(self.root, self.mvs), "call") execute_until_finished(self.mvk, self.mvs) # Body points to empty instruction, as it is a primitive self.assertEquals(get_phase(self.root, self.mvs), "init") execute_until_finished(self.mvk, self.mvs) # This will have triggered the primitive, so now we are back where we left off # Just check whether or not the correct value is in the returnvalue to be used self.assertEquals(get_inst(self.root, self.mvs), "call") self.assertEquals(get_phase(self.root, self.mvs), "finish") self.assertEquals(get_returnvalue(self.root, self.mvs), result) execute_until_finished(self.mvk, self.mvs) self.assertEquals(get_inst(self.root, self.mvs), "constant") self.assertEquals(get_phase(self.root, self.mvs), "init") execute_until_finished(self.mvk, self.mvs) self.assertEquals(get_inst(self.root, self.mvs), "constant") self.assertEquals(get_phase(self.root, self.mvs), "finish") self.assertEquals(get_returnvalue(self.root, self.mvs), "c") def helper_primitives_1_params(self, operation, a, result): self.actual_arg_a = self.mvs.execute("CN", [])[0] self.inst = self.mvs.execute("CNV", [{"value":"call"}])[0] self.const_a = self.mvs.execute("CNV", [{"value":"constant"}])[0] self.const_b = self.mvs.execute("CNV", [{"value":"constant"}])[0] self.const_c = self.mvs.execute("CNV", [{"value":"constant"}])[0] self.const_first = self.mvs.execute("CNV", [{"value":"constant"}])[0] self.value_a = self.mvs.execute("CNV", ["a"])[0] self.value_b = self.mvs.execute("CNV", ["b"])[0] self.value_c = self.mvs.execute("CNV", ["c"])[0] self.value_first = self.mvs.execute("CNV", [a])[0] self.mvs.execute("CD", [self.task_frame, "IP", self.inst]) self.const_func = self.mvs.execute("CNV", [{"value":"constant"}])[0] self.mvs.execute("CD", [self.inst, "func", self.const_func]) self.mvs.execute("CD", [self.const_func, "node", self.primitives[operation]]) self.mvs.execute("CD", [self.inst, "next", self.const_c]) self.mvs.execute("CD", [self.inst, "params", self.actual_arg_a]) self.mvs.execute("CD", [self.inst, "last_param", self.actual_arg_a]) self.mvs.execute("CD", [self.actual_arg_a, "value", self.const_first]) self.mvs.execute("CD", [self.actual_arg_a, "name", self.value_a]) self.mvs.execute("CD", [self.const_a, "node", self.value_a]) self.mvs.execute("CD", [self.const_b, "node", self.value_b]) self.mvs.execute("CD", [self.const_c, "node", self.value_c]) self.mvs.execute("CD", [self.const_first, "node", self.value_first]) ### Execute rules self.assertEquals(get_inst(self.root, self.mvs), "call") self.assertEquals(get_phase(self.root, self.mvs), "init") execute_until_finished(self.mvk, self.mvs) self.assertEquals(get_inst(self.root, self.mvs), "constant") self.assertEquals(get_phase(self.root, self.mvs), "init") execute_until_finished(self.mvk, self.mvs) self.assertEquals(get_inst(self.root, self.mvs), "constant") self.assertEquals(get_phase(self.root, self.mvs), "finish") execute_until_finished(self.mvk, self.mvs) self.assertEquals(get_inst(self.root, self.mvs), "call") self.assertEquals(get_phase_ref(self.root, self.mvs), self.actual_arg_a) execute_until_finished(self.mvk, self.mvs) self.assertEquals(get_inst(self.root, self.mvs), "constant") self.assertEquals(get_phase(self.root, self.mvs), "init") execute_until_finished(self.mvk, self.mvs) self.assertEquals(get_inst(self.root, self.mvs), "constant") self.assertEquals(get_phase(self.root, self.mvs), "finish") self.assertEquals(get_returnvalue(self.root, self.mvs), a) execute_until_finished(self.mvk, self.mvs) self.assertEquals(get_inst(self.root, self.mvs), "call") self.assertEquals(get_phase(self.root, self.mvs), "call") execute_until_finished(self.mvk, self.mvs) # Body points to empty instruction, as it is a primitive self.assertEquals(get_phase(self.root, self.mvs), "init") execute_until_finished(self.mvk, self.mvs) # This will have triggered the primitive, so now we are back where we left off # Just check whether or not the correct value is in the returnvalue to be used self.assertEquals(get_inst(self.root, self.mvs), "call") self.assertEquals(get_phase(self.root, self.mvs), "finish") self.assertEquals(get_returnvalue(self.root, self.mvs), result) execute_until_finished(self.mvk, self.mvs) self.assertEquals(get_inst(self.root, self.mvs), "constant") self.assertEquals(get_phase(self.root, self.mvs), "init") execute_until_finished(self.mvk, self.mvs) self.assertEquals(get_inst(self.root, self.mvs), "constant") self.assertEquals(get_phase(self.root, self.mvs), "finish") self.assertEquals(get_returnvalue(self.root, self.mvs), "c")