/* Copyright 2014-2016 Samsung Electronics Co., Ltd. * Copyright 2015-2016 University of Szeged. * * Licensed under the Apache License, Version 2.0 (the "License"); * you may not use this file except in compliance with the License. * You may obtain a copy of the License at * * http://www.apache.org/licenses/LICENSE-2.0 * * Unless required by applicable law or agreed to in writing, software * distributed under the License is distributed on an "AS IS" BASIS * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. * See the License for the specific language governing permissions and * limitations under the License. */ #include "ecma-alloc.h" #include "ecma-conversion.h" #include "ecma-helpers.h" #include "ecma-try-catch-macro.h" #include "opcodes.h" /** \addtogroup vm Virtual machine * @{ * * \addtogroup vm_opcodes Opcodes * @{ */ /** * Perform ECMA number logic operation. * * The algorithm of the operation is following: * leftNum = ToNumber (leftValue); * rightNum = ToNumber (rightValue); * result = leftNum BitwiseLogicOp rightNum; * * @return completion value * Returned value must be freed with ecma_free_completion_value */ ecma_completion_value_t do_number_bitwise_logic (number_bitwise_logic_op op, /**< number bitwise logic operation */ ecma_value_t left_value, /**< left value */ ecma_value_t right_value) /** right value */ { ecma_completion_value_t ret_value = ecma_make_empty_completion_value (); ECMA_OP_TO_NUMBER_TRY_CATCH (num_left, left_value, ret_value); ECMA_OP_TO_NUMBER_TRY_CATCH (num_right, right_value, ret_value); ecma_number_t* res_p = ecma_alloc_number (); int32_t left_int32 = ecma_number_to_int32 (num_left); uint32_t left_uint32 = ecma_number_to_uint32 (num_left); uint32_t right_uint32 = ecma_number_to_uint32 (num_right); switch (op) { case NUMBER_BITWISE_LOGIC_AND: { *res_p = ecma_int32_to_number ((int32_t) (left_uint32 & right_uint32)); break; } case NUMBER_BITWISE_LOGIC_OR: { *res_p = ecma_int32_to_number ((int32_t) (left_uint32 | right_uint32)); break; } case NUMBER_BITWISE_LOGIC_XOR: { *res_p = ecma_int32_to_number ((int32_t) (left_uint32 ^ right_uint32)); break; } case NUMBER_BITWISE_SHIFT_LEFT: { *res_p = ecma_int32_to_number (left_int32 << (right_uint32 & 0x1F)); break; } case NUMBER_BITWISE_SHIFT_RIGHT: { *res_p = ecma_int32_to_number (left_int32 >> (right_uint32 & 0x1F)); break; } case NUMBER_BITWISE_SHIFT_URIGHT: { *res_p = ecma_uint32_to_number (left_uint32 >> (right_uint32 & 0x1F)); break; } case NUMBER_BITWISE_NOT: { *res_p = ecma_int32_to_number ((int32_t) ~right_uint32); break; } } ret_value = ecma_make_normal_completion_value (ecma_make_number_value (res_p)); ECMA_OP_TO_NUMBER_FINALIZE (num_right); ECMA_OP_TO_NUMBER_FINALIZE (num_left); return ret_value; } /* do_number_bitwise_logic */ /** * @} * @} */