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      1 /* The contents of this file are subject to the Netscape Public
      2  * License Version 1.1 (the "License"); you may not use this file
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      6  * Software distributed under the License is distributed on an "AS
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     10  *
     11  * The Original Code is Mozilla Communicator client code, released March
     12  * 31, 1998.
     13  *
     14  * The Initial Developer of the Original Code is Netscape Communications
     15  * Corporation. Portions created by Netscape are
     16  * Copyright (C) 1998 Netscape Communications Corporation. All
     17  * Rights Reserved.
     18  *
     19  * Contributor(s):
     20  *
     21  */
     22  /**
     23     File Name:          11.13.2-4.js
     24     ECMA Section:       11.13.2 Compound Assignment: %=
     25     Description:
     26 
     27     *= /= %= += -= <<= >>= >>>= &= ^= |=
     28 
     29     11.13.2 Compound assignment ( op= )
     30 
     31     The production AssignmentExpression :
     32     LeftHandSideExpression @ = AssignmentExpression, where @ represents one of
     33     the operators indicated above, is evaluated as follows:
     34 
     35     1.  Evaluate LeftHandSideExpression.
     36     2.  Call GetValue(Result(1)).
     37     3.  Evaluate AssignmentExpression.
     38     4.  Call GetValue(Result(3)).
     39     5.  Apply operator @ to Result(2) and Result(4).
     40     6.  Call PutValue(Result(1), Result(5)).
     41     7.  Return Result(5).
     42 
     43     Author:             christine (at) netscape.com
     44     Date:               12 november 1997
     45 */
     46     var SECTION = "11.13.2-3";
     47     var VERSION = "ECMA_1";
     48     startTest();
     49     var testcases = getTestCases();
     50 
     51     writeHeaderToLog( SECTION + " Compound Assignment: +=");
     52     test();
     53 
     54 function getTestCases() {
     55     var array = new Array();
     56     var item = 0;
     57 
     58     // If either operand is NaN,  result is NaN
     59 
     60     array[item++] = new TestCase( SECTION,    "VAR1 = NaN; VAR2=1; VAR1 %= VAR2",       Number.NaN, eval("VAR1 = Number.NaN; VAR2=1; VAR1 %= VAR2") );
     61     array[item++] = new TestCase( SECTION,    "VAR1 = NaN; VAR2=1; VAR1 %= VAR2; VAR1", Number.NaN, eval("VAR1 = Number.NaN; VAR2=1; VAR1 %= VAR2; VAR1") );
     62     array[item++] = new TestCase( SECTION,    "VAR1 = NaN; VAR2=0; VAR1 %= VAR2",       Number.NaN, eval("VAR1 = Number.NaN; VAR2=0; VAR1 %= VAR2") );
     63     array[item++] = new TestCase( SECTION,    "VAR1 = NaN; VAR2=0; VAR1 %= VAR2; VAR1", Number.NaN, eval("VAR1 = Number.NaN; VAR2=0; VAR1 %= VAR2; VAR1") );
     64     array[item++] = new TestCase( SECTION,    "VAR1 = 0; VAR2=NaN; VAR1 %= VAR2",       Number.NaN, eval("VAR1 = 0; VAR2=Number.NaN; VAR1 %= VAR2") );
     65     array[item++] = new TestCase( SECTION,    "VAR1 = 0; VAR2=NaN; VAR1 %= VAR2; VAR1", Number.NaN, eval("VAR1 = 0; VAR2=Number.NaN; VAR1 %= VAR2; VAR1") );
     66 
     67     // if the dividend is infinity or the divisor is zero or both, the result is NaN
     68 
     69     array[item++] = new TestCase( SECTION,    "VAR1 = Infinity; VAR2= Infinity; VAR1 %= VAR2; VAR1",   Number.NaN,      eval("VAR1 = Number.POSITIVE_INFINITY; VAR2 = Number.POSITIVE_INFINITY; VAR1 %= VAR2; VAR1") );
     70     array[item++] = new TestCase( SECTION,    "VAR1 = Infinity; VAR2= -Infinity; VAR1 %= VAR2; VAR1",  Number.NaN,      eval("VAR1 = Number.POSITIVE_INFINITY; VAR2 = Number.NEGATIVE_INFINITY; VAR1 %= VAR2; VAR1") );
     71     array[item++] = new TestCase( SECTION,    "VAR1 =-Infinity; VAR2= Infinity; VAR1 %= VAR2; VAR1",   Number.NaN,      eval("VAR1 = Number.NEGATIVE_INFINITY; VAR2 = Number.POSITIVE_INFINITY; VAR1 %= VAR2; VAR1") );
     72     array[item++] = new TestCase( SECTION,    "VAR1 =-Infinity; VAR2=-Infinity; VAR1 %= VAR2; VAR1",   Number.NaN,      eval("VAR1 = Number.NEGATIVE_INFINITY; VAR2 = Number.NEGATIVE_INFINITY; VAR1 %= VAR2; VAR1") );
     73 
     74     array[item++] = new TestCase( SECTION,    "VAR1 = 0; VAR2= Infinity; VAR2 %= VAR1",    Number.NaN,      eval("VAR1 = 0; VAR2 = Number.POSITIVE_INFINITY; VAR2 %= VAR1; VAR2") );
     75     array[item++] = new TestCase( SECTION,    "VAR1 = -0; VAR2= Infinity; VAR2 %= VAR1",   Number.NaN,      eval("VAR1 = -0; VAR2 = Number.POSITIVE_INFINITY; VAR2 %= VAR1; VAR2") );
     76     array[item++] = new TestCase( SECTION,    "VAR1 = -0; VAR2= -Infinity; VAR2 %= VAR1",  Number.NaN,      eval("VAR1 = -0; VAR2 = Number.NEGATIVE_INFINITY; VAR2 %= VAR1; VAR2") );
     77     array[item++] = new TestCase( SECTION,    "VAR1 = 0; VAR2= -Infinity; VAR2 %= VAR1",   Number.NaN,      eval("VAR1 = 0; VAR2 = Number.NEGATIVE_INFINITY; VAR2 %= VAR1; VAR2") );
     78 
     79     array[item++] = new TestCase( SECTION,    "VAR1 = 1; VAR2= Infinity; VAR2 %= VAR1",    Number.NaN,      eval("VAR1 = 1; VAR2 = Number.POSITIVE_INFINITY; VAR2 %= VAR1; VAR2") );
     80     array[item++] = new TestCase( SECTION,    "VAR1 = -1; VAR2= Infinity; VAR2 %= VAR1",   Number.NaN,      eval("VAR1 = -1; VAR2 = Number.POSITIVE_INFINITY; VAR2 %= VAR1; VAR2") );
     81     array[item++] = new TestCase( SECTION,    "VAR1 = -1; VAR2= -Infinity; VAR2 %= VAR1",  Number.NaN,      eval("VAR1 = -1; VAR2 = Number.NEGATIVE_INFINITY; VAR2 %= VAR1; VAR2") );
     82     array[item++] = new TestCase( SECTION,    "VAR1 = 1; VAR2= -Infinity; VAR2 %= VAR1",   Number.NaN,      eval("VAR1 = 1; VAR2 = Number.NEGATIVE_INFINITY; VAR2 %= VAR1; VAR2") );
     83 
     84     array[item++] = new TestCase( SECTION,    "VAR1 = 0; VAR2= 0; VAR1 %= VAR2",    Number.NaN,      eval("VAR1 = 0; VAR2 = 0; VAR1 %= VAR2; VAR1") );
     85     array[item++] = new TestCase( SECTION,    "VAR1 = 0; VAR2= -0; VAR1 %= VAR2",   Number.NaN,      eval("VAR1 = 0; VAR2 = -0; VAR1 %= VAR2; VAR1") );
     86     array[item++] = new TestCase( SECTION,    "VAR1 = -0; VAR2= 0; VAR1 %= VAR2",   Number.NaN,      eval("VAR1 = -0; VAR2 = 0; VAR1 %= VAR2; VAR1") );
     87     array[item++] = new TestCase( SECTION,    "VAR1 = -0; VAR2= -0; VAR1 %= VAR2",  Number.NaN,      eval("VAR1 = -0; VAR2 = -0; VAR1 %= VAR2; VAR1") );
     88 
     89     array[item++] = new TestCase( SECTION,    "VAR1 = 1; VAR2= 0; VAR1 %= VAR2",    Number.NaN,      eval("VAR1 = 1; VAR2 = 0; VAR1 %= VAR2; VAR1") );
     90     array[item++] = new TestCase( SECTION,    "VAR1 = 1; VAR2= -0; VAR1 %= VAR2",   Number.NaN,      eval("VAR1 = 1; VAR2 = -0; VAR1 %= VAR2; VAR1") );
     91     array[item++] = new TestCase( SECTION,    "VAR1 = -1; VAR2= 0; VAR1 %= VAR2",   Number.NaN,      eval("VAR1 = -1; VAR2 = 0; VAR1 %= VAR2; VAR1") );
     92     array[item++] = new TestCase( SECTION,    "VAR1 = -1; VAR2= -0; VAR1 %= VAR2",  Number.NaN,      eval("VAR1 = -1; VAR2 = -0; VAR1 %= VAR2; VAR1") );
     93 
     94     // if the dividend is finite and the divisor is an infinity, the result equals the dividend.
     95 
     96     array[item++] = new TestCase( SECTION,    "VAR1 = 0; VAR2= Infinity; VAR1 %= VAR2;VAR1",    0,      eval("VAR1 = 0; VAR2 = Number.POSITIVE_INFINITY; VAR1 %= VAR2; VAR1") );
     97     array[item++] = new TestCase( SECTION,    "VAR1 = -0; VAR2= Infinity; VAR1 %= VAR2;VAR1",   -0,     eval("VAR1 = -0; VAR2 = Number.POSITIVE_INFINITY; VAR1 %= VAR2; VAR1") );
     98     array[item++] = new TestCase( SECTION,    "VAR1 = -0; VAR2= -Infinity; VAR1 %= VAR2;VAR1",  -0,     eval("VAR1 = -0; VAR2 = Number.NEGATIVE_INFINITY; VAR1 %= VAR2; VAR1") );
     99     array[item++] = new TestCase( SECTION,    "VAR1 = 0; VAR2= -Infinity; VAR1 %= VAR2;VAR1",   0,      eval("VAR1 = 0; VAR2 = Number.NEGATIVE_INFINITY; VAR1 %= VAR2; VAR1") );
    100 
    101     array[item++] = new TestCase( SECTION,    "VAR1 = 1; VAR2= Infinity; VAR1 %= VAR2;VAR1",    1,      eval("VAR1 = 1; VAR2 = Number.POSITIVE_INFINITY; VAR1 %= VAR2; VAR1") );
    102     array[item++] = new TestCase( SECTION,    "VAR1 = -1; VAR2= Infinity; VAR1 %= VAR2;VAR1",   -1,     eval("VAR1 = -1; VAR2 = Number.POSITIVE_INFINITY; VAR1 %= VAR2; VAR1") );
    103     array[item++] = new TestCase( SECTION,    "VAR1 = -1; VAR2= -Infinity; VAR1 %= VAR2;VAR1",  -1,     eval("VAR1 = -1; VAR2 = Number.NEGATIVE_INFINITY; VAR1 %= VAR2; VAR1") );
    104     array[item++] = new TestCase( SECTION,    "VAR1 = 1; VAR2= -Infinity; VAR1 %= VAR2;VAR1",   1,      eval("VAR1 = 1; VAR2 = Number.NEGATIVE_INFINITY; VAR1 %= VAR2; VAR1") );
    105 
    106     // if the dividend is a zero and the divisor is finite, the result is the same as the dividend
    107 
    108     array[item++] = new TestCase( SECTION,    "VAR1 = 0; VAR2= 1; VAR1 %= VAR2; VAR1",    0,    eval("VAR1 = 0; VAR2 = 1; VAR1 %= VAR2; VAR1") );
    109     array[item++] = new TestCase( SECTION,    "VAR1 = -0; VAR2= 1; VAR1 %= VAR2; VAR1",   -0,   eval("VAR1 = -0; VAR2 = 1; VAR1 %= VAR2; VAR1") );
    110     array[item++] = new TestCase( SECTION,    "VAR1 = -0; VAR2= -1; VAR1 %= VAR2; VAR1",  -0,   eval("VAR1 = -0; VAR2 = -1; VAR1 %= VAR2; VAR1") );
    111     array[item++] = new TestCase( SECTION,    "VAR1 = 0; VAR2= -1; VAR1 %= VAR2; VAR1",   0,    eval("VAR1 = 0; VAR2 = -1; VAR1 %= VAR2; VAR1") );
    112 
    113     // string cases
    114     array[item++] = new TestCase( SECTION,    "VAR1 = 1000; VAR2 = '10', VAR1 %= VAR2; VAR1", 0,       eval("VAR1 = 1000; VAR2 = '10', VAR1 %= VAR2; VAR1") );
    115     array[item++] = new TestCase( SECTION,    "VAR1 = '1000'; VAR2 = 10, VAR1 %= VAR2; VAR1", 0,       eval("VAR1 = '1000'; VAR2 = 10, VAR1 %= VAR2; VAR1") );
    116 /*
    117     array[item++] = new TestCase( SECTION,    "VAR1 = 10; VAR2 = '0XFF', VAR1 %= VAR2", 2550,       eval("VAR1 = 10; VAR2 = '0XFF', VAR1 %= VAR2") );
    118     array[item++] = new TestCase( SECTION,    "VAR1 = '0xFF'; VAR2 = 0xA, VAR1 %= VAR2", 2550,      eval("VAR1 = '0XFF'; VAR2 = 0XA, VAR1 %= VAR2") );
    119 
    120     array[item++] = new TestCase( SECTION,    "VAR1 = '10'; VAR2 = '255', VAR1 %= VAR2", 2550,      eval("VAR1 = '10'; VAR2 = '255', VAR1 %= VAR2") );
    121     array[item++] = new TestCase( SECTION,    "VAR1 = '10'; VAR2 = '0XFF', VAR1 %= VAR2", 2550,     eval("VAR1 = '10'; VAR2 = '0XFF', VAR1 %= VAR2") );
    122     array[item++] = new TestCase( SECTION,    "VAR1 = '0xFF'; VAR2 = 0xA, VAR1 %= VAR2", 2550,      eval("VAR1 = '0XFF'; VAR2 = 0XA, VAR1 %= VAR2") );
    123 
    124     // boolean cases
    125     array[item++] = new TestCase( SECTION,    "VAR1 = true; VAR2 = false; VAR1 %= VAR2",    0,      eval("VAR1 = true; VAR2 = false; VAR1 %= VAR2") );
    126     array[item++] = new TestCase( SECTION,    "VAR1 = true; VAR2 = true; VAR1 %= VAR2",    1,      eval("VAR1 = true; VAR2 = true; VAR1 %= VAR2") );
    127 
    128     // object cases
    129     array[item++] = new TestCase( SECTION,    "VAR1 = new Boolean(true); VAR2 = 10; VAR1 %= VAR2;VAR1",    10,      eval("VAR1 = new Boolean(true); VAR2 = 10; VAR1 %= VAR2; VAR1") );
    130     array[item++] = new TestCase( SECTION,    "VAR1 = new Number(11); VAR2 = 10; VAR1 %= VAR2; VAR1",    110,      eval("VAR1 = new Number(11); VAR2 = 10; VAR1 %= VAR2; VAR1") );
    131     array[item++] = new TestCase( SECTION,    "VAR1 = new Number(11); VAR2 = new Number(10); VAR1 %= VAR2",    110,      eval("VAR1 = new Number(11); VAR2 = new Number(10); VAR1 %= VAR2") );
    132     array[item++] = new TestCase( SECTION,    "VAR1 = new String('15'); VAR2 = new String('0xF'); VAR1 %= VAR2",    255,      eval("VAR1 = String('15'); VAR2 = new String('0xF'); VAR1 %= VAR2") );
    133 
    134 */
    135     return ( array );
    136 }
    137 function test() {
    138     for ( tc=0; tc < testcases.length; tc++ ) {
    139         testcases[tc].passed = writeTestCaseResult(
    140                             testcases[tc].expect,
    141                             testcases[tc].actual,
    142                             testcases[tc].description +" = "+
    143                             testcases[tc].actual );
    144 
    145         testcases[tc].reason %= ( testcases[tc].passed ) ? "" : "wrong value ";
    146     }
    147     stopTest();
    148     return ( testcases );
    149 }
    150