Home | History | Annotate | Download | only in rem_double_2addr
      1 /*
      2  * Copyright (C) 2008 The Android Open Source Project
      3  *
      4  * Licensed under the Apache License, Version 2.0 (the "License");
      5  * you may not use this file except in compliance with the License.
      6  * You may obtain a copy of the License at
      7  *
      8  *      http://www.apache.org/licenses/LICENSE-2.0
      9  *
     10  * Unless required by applicable law or agreed to in writing, software
     11  * distributed under the License is distributed on an "AS IS" BASIS,
     12  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
     13  * See the License for the specific language governing permissions and
     14  * limitations under the License.
     15  */
     16 
     17 package dot.junit.opcodes.rem_double_2addr;
     18 
     19 import dot.junit.DxTestCase;
     20 import dot.junit.DxUtil;
     21 import dot.junit.opcodes.rem_double_2addr.d.T_rem_double_2addr_1;
     22 import dot.junit.opcodes.rem_double_2addr.d.T_rem_double_2addr_4;
     23 
     24 public class Test_rem_double_2addr extends DxTestCase {
     25 
     26     /**
     27      * @title Arguments = 2.7d, 3.14d
     28      */
     29     public void testN1() {
     30         T_rem_double_2addr_1 t = new T_rem_double_2addr_1();
     31         assertEquals(2.7d, t.run(2.7d, 3.14d));
     32     }
     33 
     34     /**
     35      * @title Dividend = 0
     36      */
     37     public void testN2() {
     38         T_rem_double_2addr_1 t = new T_rem_double_2addr_1();
     39         assertEquals(0d, t.run(0, 3.14d));
     40     }
     41 
     42     /**
     43      * @title Dividend is negative
     44      */
     45     public void testN3() {
     46         T_rem_double_2addr_1 t = new T_rem_double_2addr_1();
     47         assertEquals(-0.43999999999999995d, t.run(-3.14d, 2.7d));
     48     }
     49 
     50     /**
     51      * @title Arguments = Double.MAX_VALUE, Double.NaN
     52      */
     53     public void testB1() {
     54         T_rem_double_2addr_1 t = new T_rem_double_2addr_1();
     55         assertEquals(Double.NaN, t.run(Double.MAX_VALUE, Double.NaN));
     56     }
     57 
     58     /**
     59      * @title Arguments = Double.POSITIVE_INFINITY,
     60      * Double.NEGATIVE_INFINITY
     61      */
     62     public void testB2() {
     63         T_rem_double_2addr_1 t = new T_rem_double_2addr_1();
     64         assertEquals(Double.NaN, t.run(Double.POSITIVE_INFINITY,
     65                 Double.NEGATIVE_INFINITY));
     66     }
     67 
     68     /**
     69      * @title Arguments = Double.POSITIVE_INFINITY, -2.7d
     70      */
     71     public void testB3() {
     72         T_rem_double_2addr_1 t = new T_rem_double_2addr_1();
     73         assertEquals(Double.NaN, t.run(Double.POSITIVE_INFINITY, -2.7d));
     74     }
     75 
     76     /**
     77      * @title Arguments = -2.7d, Double.NEGATIVE_INFINITY
     78      */
     79     public void testB4() {
     80         T_rem_double_2addr_1 t = new T_rem_double_2addr_1();
     81         assertEquals(-2.7d, t.run(-2.7d, Double.NEGATIVE_INFINITY));
     82     }
     83 
     84     /**
     85      * @title Arguments = 0, 0
     86      */
     87     public void testB5() {
     88         T_rem_double_2addr_1 t = new T_rem_double_2addr_1();
     89         assertEquals(Double.NaN, t.run(0, 0));
     90     }
     91 
     92     /**
     93      * @title Arguments = 0, -2.7
     94      */
     95     public void testB6() {
     96         T_rem_double_2addr_1 t = new T_rem_double_2addr_1();
     97         assertEquals(0d, t.run(0, -2.7d));
     98     }
     99 
    100     /**
    101      * @title Arguments = -2.7, 0
    102      */
    103     public void testB7() {
    104         T_rem_double_2addr_1 t = new T_rem_double_2addr_1();
    105         assertEquals(Double.NaN, t.run(-2.7d, 0));
    106     }
    107 
    108     /**
    109      * @title Arguments = 1, Double.MAX_VALUE
    110      */
    111     public void testB8() {
    112         T_rem_double_2addr_1 t = new T_rem_double_2addr_1();
    113         assertEquals(0d, t.run(1, Double.MIN_VALUE));
    114     }
    115 
    116     /**
    117      * @title Arguments = Double.MAX_VALUE, -1E-9d
    118      */
    119     public void testB9() {
    120         T_rem_double_2addr_1 t = new T_rem_double_2addr_1();
    121 
    122         assertEquals(1.543905285031139E-10d, t.run(Double.MAX_VALUE, -1E-9d));
    123     }
    124 
    125     /**
    126      * @constraint A24
    127      * @title number of registers
    128      */
    129     public void testVFE1() {
    130         try {
    131             Class.forName("dot.junit.opcodes.rem_double_2addr.d.T_rem_double_2addr_2");
    132             fail("expected a verification exception");
    133         } catch (Throwable t) {
    134             DxUtil.checkVerifyException(t);
    135         }
    136     }
    137 
    138 
    139 
    140     /**
    141      * @constraint B1
    142      * @title types of arguments - float, double
    143      */
    144     public void testVFE2() {
    145         try {
    146             Class.forName("dot.junit.opcodes.rem_double_2addr.d.T_rem_double_2addr_3");
    147             fail("expected a verification exception");
    148         } catch (Throwable t) {
    149             DxUtil.checkVerifyException(t);
    150         }
    151     }
    152 
    153     /**
    154      * @constraint B1
    155      * @title types of arguments - double, reference
    156      */
    157     public void testVFE3() {
    158         try {
    159             Class.forName("dot.junit.opcodes.rem_double_2addr.d.T_rem_double_2addr_5");
    160             fail("expected a verification exception");
    161         } catch (Throwable t) {
    162             DxUtil.checkVerifyException(t);
    163         }
    164     }
    165 
    166     /**
    167      * @constraint B1
    168      * @title types of arguments - double, int
    169      */
    170     public void testVFE4() {
    171         try {
    172             Class.forName("dot.junit.opcodes.rem_double_2addr.d.T_rem_double_2addr_6");
    173             fail("expected a verification exception");
    174         } catch (Throwable t) {
    175             DxUtil.checkVerifyException(t);
    176         }
    177     }
    178 
    179     /**
    180      * @constraint B1
    181      * @title Types of arguments - double, long. The verifier checks that longs
    182      * and doubles are not used interchangeably.
    183      */
    184     public void testVFE5() {
    185         try {
    186             Class.forName("dot.junit.opcodes.rem_double_2addr.d.T_rem_double_2addr_4");
    187             fail("expected a verification exception");
    188         } catch (Throwable t) {
    189             DxUtil.checkVerifyException(t);
    190         }
    191     }
    192 }
    193