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6 ** This file is part of the test suite of the Qt Toolkit.
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40 ****************************************************************************/
42 // This JavaScript file is a single, large, imported script.
43 // It imports many other (non-nested) single, large, scripts,
44 // and also imports many other nested, large scripts.
46 .import "mldsi4.js" as Mldsi4
47 .import "mldsi9.js" as Mldsi9
48 .import "mlbsi1.js" as Mlbsi1
49 .import "mlbsi2.js" as Mlbsi2
50 .import "mlbsi3.js" as Mlbsi3
51 .import "mlbsi4.js" as Mlbsi4
52 .import "mlbsi5.js" as Mlbsi5
53 .import "mlbsi6.js" as Mlbsi6
54 .import "mlbsi7.js" as Mlbsi7
55 .import "mlbsi8.js" as Mlbsi8
56 .import "mlbsi9.js" as Mlbsi9
57 .import "mlbsi10.js" as Mlbsi10
58 .import "mlbsi11.js" as Mlbsi11
59 .import "mlbsi12.js" as Mlbsi12
60 .import "mlbsi13.js" as Mlbsi13
61 .import "mlbsi14.js" as Mlbsi14
62 .import "mlbsi15.js" as Mlbsi15
64 function testFunc(seedValue) {
65 var firstFactor = calculateFirstFactor(seedValue);
66 var secondFactor = calculateSecondFactor(seedValue);
67 var modificationTerm = calculateModificationTerm(seedValue);
69 // do some regexp matching
70 var someString = "This is a random string which we'll perform regular expression matching on to reduce considerably. This is meant to be part of a complex javascript expression whose evaluation takes considerably longer than the creation cost of QScriptValue.";
71 var regexpPattern = new RegExp("is", "i");
72 var regexpOutputLength = 0;
73 var temp = regexpPattern.exec(someString);
74 while (temp == "is") {
75 regexpOutputLength += 4;
76 regexpOutputLength *= 2;
77 temp = regexpPattern.exec(someString);
78 if (regexpOutputLength > (seedValue * 3)) {
83 // spin in a for loop for a while
86 var cumulativeTotal = 3;
87 for (i = 20; i > 1; i--) {
88 for (j = 31; j > 5; j--) {
89 var branchVariable = i + j;
90 if (branchVariable % 3 == 0) {
91 cumulativeTotal -= secondFactor;
93 cumulativeTotal += firstFactor;
96 if (cumulativeTotal > (seedValue * 50)) {
101 var retn = cumulativeTotal;
102 retn += Mlbsi1.testFunc(seedValue);
103 retn += Mlbsi2.testFunc(seedValue);
104 retn += Mlbsi3.testFunc(retn);
105 retn += Mlbsi4.testFunc(seedValue);
106 retn += Mlbsi5.testFunc(seedValue);
107 retn += Mlbsi6.testFunc(seedValue);
108 retn *= Mldsi9.testFunc(retn);
109 retn += Mlbsi7.testFunc(seedValue);
110 retn += Mlbsi8.testFunc(retn);
111 retn += Mlbsi9.testFunc(seedValue);
112 retn += Mlbsi10.testFunc(seedValue);
113 retn += Mlbsi11.testFunc(seedValue);
114 retn *= Mldsi4.testFunc(retn);
115 retn += Mlbsi12.testFunc(seedValue);
116 retn += Mlbsi13.testFunc(retn);
117 retn += Mlbsi14.testFunc(seedValue);
118 retn += Mlbsi15.testFunc(seedValue);
122 function calculateFirstFactor(seedValue) {
123 var firstFactor = (0.45 * (9.3 / 3.1) - 0.90);
124 firstFactor *= (1 + (0.00001 / seedValue));
128 function calculateSecondFactor(seedValue) {
129 var secondFactor = 0.78 * (6.3 / 2.1) - (0.39 * 4);
130 secondFactor *= (1 + (0.00001 / seedValue));
134 function calculateModificationTerm(seedValue) {
135 var modificationTerm = (12 + (9*7) - 54 + 16 - ((calculateFirstFactor(seedValue) * seedValue) / 3) + (4*calculateSecondFactor(seedValue) * seedValue * 1.33)) + (calculateSecondFactor(seedValue) * seedValue);
136 modificationTerm = modificationTerm + (33/2) + 19 - (9*2) - (61*3) + 177;
137 return modificationTerm;