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| 1 // Copyright 2015 the V8 project authors. All rights reserved. |
| 2 // Redistribution and use in source and binary forms, with or without |
| 3 // modification, are permitted provided that the following conditions are |
| 4 // met: |
| 5 // |
| 6 // * Redistributions of source code must retain the above copyright |
| 7 // notice, this list of conditions and the following disclaimer. |
| 8 // * Redistributions in binary form must reproduce the above |
| 9 // copyright notice, this list of conditions and the following |
| 10 // disclaimer in the documentation and/or other materials provided |
| 11 // with the distribution. |
| 12 // * Neither the name of Google Inc. nor the names of its |
| 13 // contributors may be used to endorse or promote products derived |
| 14 // from this software without specific prior written permission. |
| 15 // |
| 16 // THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS |
| 17 // "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT |
| 18 // LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR |
| 19 // A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT |
| 20 // OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, |
| 21 // SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT |
| 22 // LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, |
| 23 // DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY |
| 24 // THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT |
| 25 // (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE |
| 26 // OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. |
| 27 |
| 28 // Flags: --harmony-simd --harmony-tostring --allow-natives-syntax |
| 29 |
| 30 function isValidSimdString(string, value, type, lanes) { |
| 31 var simdFn = SIMD[type], |
| 32 parseFn = |
| 33 type.indexOf('float') === 0 ? Number.parseFloat : Number.parseInt; |
| 34 var laneStrings = string.split(','); |
| 35 if (laneStrings.length !== lanes) |
| 36 return false; |
| 37 for (var i = 0; i < lanes; i++) { |
| 38 var fromString = parseFn(laneStrings[i]), |
| 39 fromValue = simdFn.extractLane(value, i); |
| 40 if (Math.abs(fromString - fromValue) > Number.EPSILON) |
| 41 return false; |
| 42 } |
| 43 return true; |
| 44 } |
| 45 |
| 46 |
| 47 // Test different forms of constructor calls. |
| 48 function TestConstructor(type, lanes, values) { |
| 49 var simdFn = SIMD[type]; |
| 50 assertFalse(Object === simdFn.prototype.constructor) |
| 51 assertFalse(simdFn === Object.prototype.constructor) |
| 52 assertSame(simdFn, simdFn.prototype.constructor) |
| 53 |
| 54 // Constructors expect values for all lanes. |
| 55 assertThrows(function () { simdFn() }, TypeError) |
| 56 assertThrows(function () { simdFn(0) }, TypeError) |
| 57 switch (lanes) { |
| 58 case 4: |
| 59 values.push(simdFn(0, 1, 2, 3)); |
| 60 values.push(simdFn(-0, NaN, 0, 0.5)); |
| 61 // Constructors expect values for all lanes. |
| 62 assertThrows(function () { simdFn(0, 1) }, TypeError) |
| 63 assertThrows(function () { simdFn(0, 1, 2) }, TypeError) |
| 64 break |
| 65 } |
| 66 for (var i in values) { |
| 67 assertSame(simdFn, values[i].__proto__.constructor) |
| 68 assertSame(simdFn, Object(values[i]).__proto__.constructor) |
| 69 } |
| 70 } |
| 71 |
| 72 |
| 73 function TestType(type, lanes, values) { |
| 74 for (var i in values) { |
| 75 assertEquals(type, typeof values[i]) |
| 76 assertTrue(typeof values[i] === type) |
| 77 assertTrue(typeof Object(values[i]) === 'object') |
| 78 assertEquals(null, %_ClassOf(values[i])) |
| 79 assertEquals("Float32x4", %_ClassOf(Object(values[i]))) |
| 80 } |
| 81 } |
| 82 |
| 83 |
| 84 function TestPrototype(type, lanes, values) { |
| 85 var simdFn = SIMD[type]; |
| 86 assertSame(Object.prototype, simdFn.prototype.__proto__) |
| 87 for (var i in values) { |
| 88 assertSame(simdFn.prototype, values[i].__proto__) |
| 89 assertSame(simdFn.prototype, Object(values[i]).__proto__) |
| 90 } |
| 91 } |
| 92 |
| 93 |
| 94 function TestValueOf(type, lanes, values) { |
| 95 var simdFn = SIMD[type]; |
| 96 for (var i in values) { |
| 97 assertTrue(values[i] === Object(values[i]).valueOf()) |
| 98 assertTrue(values[i] === values[i].valueOf()) |
| 99 assertTrue(simdFn.prototype.valueOf.call(Object(values[i])) === values[i]) |
| 100 assertTrue(simdFn.prototype.valueOf.call(values[i]) === values[i]) |
| 101 } |
| 102 } |
| 103 |
| 104 |
| 105 function TestGet(type, lanes, values) { |
| 106 var simdFn = SIMD[type]; |
| 107 for (var i in values) { |
| 108 assertEquals(undefined, values[i].a) |
| 109 assertEquals(undefined, values[i]["a" + "b"]) |
| 110 assertEquals(undefined, values[i]["" + "1"]) |
| 111 assertEquals(undefined, values[i][42]) |
| 112 } |
| 113 } |
| 114 |
| 115 |
| 116 function TestToBoolean(type, lanes, values) { |
| 117 for (var i in values) { |
| 118 assertTrue(Boolean(Object(values[i]))) |
| 119 assertFalse(!Object(values[i])) |
| 120 assertTrue(Boolean(values[i]).valueOf()) |
| 121 assertFalse(!values[i]) |
| 122 assertTrue(!!values[i]) |
| 123 assertTrue(values[i] && true) |
| 124 assertFalse(!values[i] && false) |
| 125 assertTrue(!values[i] || true) |
| 126 assertEquals(1, values[i] ? 1 : 2) |
| 127 assertEquals(2, !values[i] ? 1 : 2) |
| 128 if (!values[i]) assertUnreachable(); |
| 129 if (values[i]) {} else assertUnreachable(); |
| 130 } |
| 131 } |
| 132 |
| 133 |
| 134 function TestToString(type, lanes, values) { |
| 135 var simdFn = SIMD[type]; |
| 136 for (var i in values) { |
| 137 assertEquals(values[i].toString(), String(values[i])) |
| 138 assertTrue(isValidSimdString(values[i].toString(), values[i], type, lanes)) |
| 139 assertTrue( |
| 140 isValidSimdString(Object(values[i]).toString(), values[i], type, lanes)) |
| 141 assertTrue(isValidSimdString( |
| 142 simdFn.prototype.toString.call(values[i]), values[i], type, lanes)) |
| 143 } |
| 144 } |
| 145 |
| 146 |
| 147 function TestToNumber(type, lanes, values) { |
| 148 for (var i in values) { |
| 149 assertThrows(function() { Number(Object(values[i])) }, TypeError) |
| 150 assertThrows(function() { +Object(values[i]) }, TypeError) |
| 151 assertThrows(function() { Number(values[i]) }, TypeError) |
| 152 assertThrows(function() { values[i] + 0 }, TypeError) |
| 153 } |
| 154 } |
| 155 |
| 156 |
| 157 function TestEquality(type, lanes, values) { |
| 158 // Every SIMD value should equal itself, and non-strictly equal its wrapper. |
| 159 for (var i in values) { |
| 160 assertSame(values[i], values[i]) |
| 161 assertEquals(values[i], values[i]) |
| 162 assertTrue(Object.is(values[i], values[i])) |
| 163 assertTrue(values[i] === values[i]) |
| 164 assertTrue(values[i] == values[i]) |
| 165 assertFalse(values[i] === Object(values[i])) |
| 166 assertFalse(Object(values[i]) === values[i]) |
| 167 assertFalse(values[i] == Object(values[i])) |
| 168 assertFalse(Object(values[i]) == values[i]) |
| 169 assertTrue(values[i] === values[i].valueOf()) |
| 170 assertTrue(values[i].valueOf() === values[i]) |
| 171 assertTrue(values[i] == values[i].valueOf()) |
| 172 assertTrue(values[i].valueOf() == values[i]) |
| 173 assertFalse(Object(values[i]) === Object(values[i])) |
| 174 assertEquals(Object(values[i]).valueOf(), Object(values[i]).valueOf()) |
| 175 } |
| 176 |
| 177 // SIMD values should not equal other SIMD values. |
| 178 for (var i = 0; i < values.length; ++i) { |
| 179 for (var j = i + 1; j < values.length; ++j) { |
| 180 assertFalse(Object.is(values[i], values[j])) |
| 181 assertFalse(values[i] === values[j]) |
| 182 assertFalse(values[i] == values[j]) |
| 183 } |
| 184 } |
| 185 |
| 186 // SIMD values should not be equal to any other kind of object. |
| 187 var others = [347, 1.275, NaN, "string", null, undefined, {}, function() {}] |
| 188 for (var i in values) { |
| 189 for (var j in others) { |
| 190 assertFalse(values[i] === others[j]) |
| 191 assertFalse(others[j] === values[i]) |
| 192 assertFalse(values[i] == others[j]) |
| 193 assertFalse(others[j] == values[i]) |
| 194 } |
| 195 } |
| 196 } |
| 197 |
| 198 |
| 199 function TestComparison(type, lanes, values) { |
| 200 var a = values[0], b = values[1]; |
| 201 |
| 202 function lt() { a < b; } |
| 203 function gt() { a > b; } |
| 204 function le() { a <= b; } |
| 205 function ge() { a >= b; } |
| 206 function lt_same() { a < a; } |
| 207 function gt_same() { a > a; } |
| 208 function le_same() { a <= a; } |
| 209 function ge_same() { a >= a; } |
| 210 |
| 211 var throwFuncs = [lt, gt, le, ge, lt_same, gt_same, le_same, ge_same]; |
| 212 |
| 213 for (var f of throwFuncs) { |
| 214 assertThrows(f, TypeError); |
| 215 %OptimizeFunctionOnNextCall(f); |
| 216 assertThrows(f, TypeError); |
| 217 assertThrows(f, TypeError); |
| 218 } |
| 219 } |
| 220 |
| 221 |
| 222 // Test SIMD value wrapping/boxing over non-builtins. |
| 223 function TestCall(type, lanes, values) { |
| 224 var simdFn = SIMD[type]; |
| 225 simdFn.prototype.getThisProto = function () { |
| 226 return Object.getPrototypeOf(this); |
| 227 } |
| 228 for (var i in values) { |
| 229 assertTrue(values[i].getThisProto() === simdFn.prototype) |
| 230 } |
| 231 } |
| 232 |
| 233 |
| 234 function TestAll() { |
| 235 var types = [ 'float32x4' ]; |
| 236 |
| 237 function lanesForType(typeName) { |
| 238 return Number.parseInt(typeName[typeName.length - 1]); |
| 239 } |
| 240 |
| 241 for (var i = 0; i < types.length; ++i) { |
| 242 var type = types[i], |
| 243 lanes = lanesForType(type); |
| 244 var values = []; |
| 245 TestConstructor(type, lanes, values); |
| 246 TestType(type, lanes, values); |
| 247 TestPrototype(type, lanes, values); |
| 248 TestValueOf(type, lanes, values); |
| 249 TestGet(type, lanes, values); |
| 250 TestToBoolean(type, lanes, values); |
| 251 TestToString(type, lanes, values); |
| 252 TestToNumber(type, lanes, values); |
| 253 TestEquality(type, lanes, values); |
| 254 TestComparison(type, lanes, values); |
| 255 TestCall(type, lanes, values); |
| 256 } |
| 257 } |
| 258 TestAll() |
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