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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.float_to_long;
18 
19 import dot.junit.DxTestCase;
20 import dot.junit.DxUtil;
21 import dot.junit.opcodes.float_to_long.d.T_float_to_long_1;
22 import dot.junit.opcodes.float_to_long.d.T_float_to_long_7;
23 
24 public class Test_float_to_long extends DxTestCase {
25     /**
26      * @title Argument = 2.999999f
27      */
testN1()28     public void testN1() {
29         T_float_to_long_1 t = new T_float_to_long_1();
30         assertEquals(2l, t.run(2.999999f));
31     }
32 
33     /**
34      * @title Argument = 1
35      */
testN2()36     public void testN2() {
37          T_float_to_long_1 t = new T_float_to_long_1();
38          assertEquals(1l, t.run(1));
39     }
40 
41     /**
42      * @title Argument = -1
43      */
testN3()44     public void testN3() {
45          T_float_to_long_1 t = new T_float_to_long_1();
46          assertEquals(-1l, t.run(-1));
47     }
48 
49     /**
50      * @title Argument = Float.MAX_VALUE
51      */
testB1()52     public void testB1() {
53         T_float_to_long_1 t = new T_float_to_long_1();
54         assertEquals(Long.MAX_VALUE, t.run(Float.MAX_VALUE));
55     }
56 
57     /**
58      * @title Argument = Float.MIN_VALUE
59      */
testB2()60     public void testB2() {
61         T_float_to_long_1 t = new T_float_to_long_1();
62         assertEquals(0, t.run(Float.MIN_VALUE));
63     }
64 
65     /**
66      * @title Argument = 0
67      */
testB3()68     public void testB3() {
69         T_float_to_long_1 t = new T_float_to_long_1();
70         assertEquals(0l, t.run(0));
71     }
72 
73     /**
74      * @title Argument = NaN
75      */
testB4()76     public void testB4() {
77         T_float_to_long_1 t = new T_float_to_long_1();
78         assertEquals(0l, t.run(Float.NaN));
79     }
80 
81     /**
82      * @title Argument = POSITIVE_INFINITY
83      */
testB5()84     public void testB5() {
85         T_float_to_long_1 t = new T_float_to_long_1();
86         assertEquals(Long.MAX_VALUE, t.run(Float.POSITIVE_INFINITY));
87     }
88 
89     /**
90      * @title Argument = NEGATIVE_INFINITY
91      */
testB6()92     public void testB6() {
93         T_float_to_long_1 t = new T_float_to_long_1();
94         assertEquals(Long.MIN_VALUE, t.run(Float.NEGATIVE_INFINITY));
95     }
96 
97     /**
98      * @constraint B1
99      * @title number of arguments
100      */
testVFE1()101     public void testVFE1() {
102         try
103         {
104             Class.forName("dxc.junit.opcodes.float_to_long.jm.T_float_to_long_2");
105             fail("expected a verification exception");
106         } catch (Throwable t) {
107             DxUtil.checkVerifyException(t);
108         }
109     }
110 
111 
112     /**
113      *
114      * @constraint B1
115      * @title type of argument - double
116      */
testVFE2()117     public void testVFE2() {
118         try
119         {
120             Class.forName("dot.junit.opcodes.float_to_long.d.T_float_to_long_2");
121             fail("expected a verification exception");
122         } catch (Throwable t) {
123             DxUtil.checkVerifyException(t);
124         }
125     }
126 
127     /**
128      *
129      * @constraint B1
130      * @title type of argument - long
131      */
testVFE3()132     public void testVFE3() {
133         try
134         {
135             Class.forName("dot.junit.opcodes.float_to_long.d.T_float_to_long_3");
136             fail("expected a verification exception");
137         } catch (Throwable t) {
138             DxUtil.checkVerifyException(t);
139         }
140     }
141 
142     /**
143      * @constraint A24
144      * @title number of registers
145      */
testVFE4()146     public void testVFE4() {
147         try
148         {
149             Class.forName("dot.junit.opcodes.float_to_long.d.T_float_to_long_4");
150             fail("expected a verification exception");
151         } catch (Throwable t) {
152             DxUtil.checkVerifyException(t);
153         }
154     }
155 
156     /**
157      * @constraint B1
158      * @title type of argument - reference
159      */
testVFE5()160     public void testVFE5() {
161         try
162         {
163             Class.forName("dot.junit.opcodes.float_to_long.d.T_float_to_long_5");
164             fail("expected a verification exception");
165         } catch (Throwable t) {
166             DxUtil.checkVerifyException(t);
167         }
168     }
169 
170     /**
171      * @constraint A23
172      * @title  number of registers
173      */
testVFE6()174     public void testVFE6() {
175         try {
176             Class.forName("dot.junit.opcodes.float_to_long.d.T_float_to_long_6");
177             fail("expected a verification exception");
178         } catch (Throwable t) {
179             DxUtil.checkVerifyException(t);
180         }
181     }
182 
183     /**
184      * @constraint B1
185      * @title Type of argument - int. The verifier checks that ints
186      * and floats are not used interchangeably.
187      */
testVFE7()188     public void testVFE7() {
189         try {
190             Class.forName("dot.junit.opcodes.float_to_long.d.T_float_to_long_7");
191             fail("expected a verification exception");
192         } catch (Throwable t) {
193             DxUtil.checkVerifyException(t);
194         }
195     }
196 }
197