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1 // Copyright 2012 the V8 project authors. All rights reserved. | 1 // Copyright 2012 the V8 project authors. All rights reserved. |
2 // Redistribution and use in source and binary forms, with or without | 2 // Redistribution and use in source and binary forms, with or without |
3 // modification, are permitted provided that the following conditions are | 3 // modification, are permitted provided that the following conditions are |
4 // met: | 4 // met: |
5 // | 5 // |
6 // * Redistributions of source code must retain the above copyright | 6 // * Redistributions of source code must retain the above copyright |
7 // notice, this list of conditions and the following disclaimer. | 7 // notice, this list of conditions and the following disclaimer. |
8 // * Redistributions in binary form must reproduce the above | 8 // * Redistributions in binary form must reproduce the above |
9 // copyright notice, this list of conditions and the following | 9 // copyright notice, this list of conditions and the following |
10 // disclaimer in the documentation and/or other materials provided | 10 // disclaimer in the documentation and/or other materials provided |
11 // with the distribution. | 11 // with the distribution. |
12 // * Neither the name of Google Inc. nor the names of its | 12 // * Neither the name of Google Inc. nor the names of its |
13 // contributors may be used to endorse or promote products derived | 13 // contributors may be used to endorse or promote products derived |
14 // from this software without specific prior written permission. | 14 // from this software without specific prior written permission. |
15 // | 15 // |
16 // THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS | 16 // THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS |
17 // "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT | 17 // "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT |
18 // LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR | 18 // LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR |
19 // A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT | 19 // A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT |
20 // OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, | 20 // OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, |
21 // SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT | 21 // SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT |
22 // LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, | 22 // LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, |
23 // DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY | 23 // DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY |
24 // THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT | 24 // THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT |
25 // (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE | 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. | 26 // OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. |
27 | 27 |
28 // Flags: --allow-natives-syntax --smi-only-arrays --expose-gc | 28 // Flags: --allow-natives-syntax --smi-only-arrays --expose-gc |
29 // Flags: --track-allocation-sites | 29 // Flags: --track-allocation-sites --nooptimize-constructed-arrays |
| 30 |
| 31 // TODO(mvstanton): remove --nooptimize-constructed-arrays and enable |
| 32 // the constructed array code below when the feature is turned on |
| 33 // by default. |
30 | 34 |
31 // Test element kind of objects. | 35 // Test element kind of objects. |
32 // Since --smi-only-arrays affects builtins, its default setting at compile | 36 // Since --smi-only-arrays affects builtins, its default setting at compile |
33 // time sticks if built with snapshot. If --smi-only-arrays is deactivated | 37 // time sticks if built with snapshot. If --smi-only-arrays is deactivated |
34 // by default, only a no-snapshot build actually has smi-only arrays enabled | 38 // by default, only a no-snapshot build actually has smi-only arrays enabled |
35 // in this test case. Depending on whether smi-only arrays are actually | 39 // in this test case. Depending on whether smi-only arrays are actually |
36 // enabled, this test takes the appropriate code path to check smi-only arrays. | 40 // enabled, this test takes the appropriate code path to check smi-only arrays. |
37 | 41 |
38 support_smi_only_arrays = %HasFastSmiElements(new Array(1,2,3,4,5,6,7,8)); | 42 support_smi_only_arrays = %HasFastSmiElements(new Array(1,2,3,4,5,6,7,8)); |
| 43 optimize_constructed_arrays = false; |
39 | 44 |
40 if (support_smi_only_arrays) { | 45 if (support_smi_only_arrays) { |
41 print("Tests include smi-only arrays."); | 46 print("Tests include smi-only arrays."); |
42 } else { | 47 } else { |
43 print("Tests do NOT include smi-only arrays."); | 48 print("Tests do NOT include smi-only arrays."); |
44 } | 49 } |
45 | 50 |
| 51 if (optimize_constructed_arrays) { |
| 52 print("Tests include constructed array optimizations."); |
| 53 } else { |
| 54 print("Tests do NOT include constructed array optimizations."); |
| 55 } |
| 56 |
46 var elements_kind = { | 57 var elements_kind = { |
47 fast_smi_only : 'fast smi only elements', | 58 fast_smi_only : 'fast smi only elements', |
48 fast : 'fast elements', | 59 fast : 'fast elements', |
49 fast_double : 'fast double elements', | 60 fast_double : 'fast double elements', |
50 dictionary : 'dictionary elements', | 61 dictionary : 'dictionary elements', |
51 external_byte : 'external byte elements', | 62 external_byte : 'external byte elements', |
52 external_unsigned_byte : 'external unsigned byte elements', | 63 external_unsigned_byte : 'external unsigned byte elements', |
53 external_short : 'external short elements', | 64 external_short : 'external short elements', |
54 external_unsigned_short : 'external unsigned short elements', | 65 external_unsigned_short : 'external unsigned short elements', |
55 external_int : 'external int elements', | 66 external_int : 'external int elements', |
56 external_unsigned_int : 'external unsigned int elements', | 67 external_unsigned_int : 'external unsigned int elements', |
57 external_float : 'external float elements', | 68 external_float : 'external float elements', |
58 external_double : 'external double elements', | 69 external_double : 'external double elements', |
59 external_pixel : 'external pixel elements' | 70 external_pixel : 'external pixel elements' |
60 } | 71 } |
61 | 72 |
62 function getKind(obj) { | 73 function getKind(obj) { |
63 if (%HasFastSmiElements(obj)) return elements_kind.fast_smi_only; | 74 if (%HasFastSmiElements(obj)) return elements_kind.fast_smi_only; |
64 if (%HasFastObjectElements(obj)) return elements_kind.fast; | 75 if (%HasFastObjectElements(obj)) return elements_kind.fast; |
65 if (%HasFastDoubleElements(obj)) return elements_kind.fast_double; | 76 if (%HasFastDoubleElements(obj)) return elements_kind.fast_double; |
66 if (%HasDictionaryElements(obj)) return elements_kind.dictionary; | 77 if (%HasDictionaryElements(obj)) return elements_kind.dictionary; |
67 } | 78 } |
68 | 79 |
| 80 function isHoley(obj) { |
| 81 if (%HasFastHoleyElements(obj)) return true; |
| 82 return false; |
| 83 } |
| 84 |
69 function assertKind(expected, obj, name_opt) { | 85 function assertKind(expected, obj, name_opt) { |
70 if (!support_smi_only_arrays && | 86 if (!support_smi_only_arrays && |
71 expected == elements_kind.fast_smi_only) { | 87 expected == elements_kind.fast_smi_only) { |
72 expected = elements_kind.fast; | 88 expected = elements_kind.fast; |
73 } | 89 } |
74 assertEquals(expected, getKind(obj), name_opt); | 90 assertEquals(expected, getKind(obj), name_opt); |
75 } | 91 } |
76 | 92 |
| 93 function assertHoley(obj, name_opt) { |
| 94 assertEquals(true, isHoley(obj), name_opt); |
| 95 } |
| 96 |
| 97 function assertNotHoley(obj, name_opt) { |
| 98 assertEquals(false, isHoley(obj), name_opt); |
| 99 } |
| 100 |
77 if (support_smi_only_arrays) { | 101 if (support_smi_only_arrays) { |
| 102 |
| 103 obj = []; |
| 104 assertNotHoley(obj); |
| 105 assertKind(elements_kind.fast_smi_only, obj); |
| 106 |
| 107 obj = [1, 2, 3]; |
| 108 assertNotHoley(obj); |
| 109 assertKind(elements_kind.fast_smi_only, obj); |
| 110 |
| 111 obj = new Array(); |
| 112 assertNotHoley(obj); |
| 113 assertKind(elements_kind.fast_smi_only, obj); |
| 114 |
| 115 obj = new Array(0); |
| 116 assertNotHoley(obj); |
| 117 assertKind(elements_kind.fast_smi_only, obj); |
| 118 |
| 119 obj = new Array(2); |
| 120 assertHoley(obj); |
| 121 assertKind(elements_kind.fast_smi_only, obj); |
| 122 |
| 123 obj = new Array(1,2,3); |
| 124 assertNotHoley(obj); |
| 125 assertKind(elements_kind.fast_smi_only, obj); |
| 126 |
| 127 obj = new Array(1, "hi", 2, undefined); |
| 128 assertNotHoley(obj); |
| 129 assertKind(elements_kind.fast, obj); |
| 130 |
78 function fastliteralcase(literal, value) { | 131 function fastliteralcase(literal, value) { |
79 // var literal = [1, 2, 3]; | |
80 literal[0] = value; | 132 literal[0] = value; |
81 return literal; | 133 return literal; |
82 } | 134 } |
83 | 135 |
84 function get_standard_literal() { | 136 function get_standard_literal() { |
85 var literal = [1, 2, 3]; | 137 var literal = [1, 2, 3]; |
86 return literal; | 138 return literal; |
87 } | 139 } |
88 | 140 |
89 // Case: [1,2,3] as allocation site | 141 // Case: [1,2,3] as allocation site |
90 obj = fastliteralcase(get_standard_literal(), 1); | 142 obj = fastliteralcase(get_standard_literal(), 1); |
91 assertKind(elements_kind.fast_smi_only, obj); | 143 assertKind(elements_kind.fast_smi_only, obj); |
92 obj = fastliteralcase(get_standard_literal(), 1.5); | 144 obj = fastliteralcase(get_standard_literal(), 1.5); |
93 assertKind(elements_kind.fast_double, obj); | 145 assertKind(elements_kind.fast_double, obj); |
94 obj = fastliteralcase(get_standard_literal(), 2); | 146 obj = fastliteralcase(get_standard_literal(), 2); |
95 assertKind(elements_kind.fast_double, obj); | 147 assertKind(elements_kind.fast_double, obj); |
96 | 148 |
97 obj = fastliteralcase([5, 3, 2], 1.5); | 149 obj = fastliteralcase([5, 3, 2], 1.5); |
98 assertKind(elements_kind.fast_double, obj); | 150 assertKind(elements_kind.fast_double, obj); |
99 obj = fastliteralcase([3, 6, 2], 1.5); | 151 obj = fastliteralcase([3, 6, 2], 1.5); |
100 assertKind(elements_kind.fast_double, obj); | 152 assertKind(elements_kind.fast_double, obj); |
101 obj = fastliteralcase([2, 6, 3], 2); | 153 obj = fastliteralcase([2, 6, 3], 2); |
102 assertKind(elements_kind.fast_smi_only, obj); | 154 assertKind(elements_kind.fast_smi_only, obj); |
103 | 155 |
104 // Verify that we will not pretransition the double->fast path. | 156 // Verify that we will not pretransition the double->fast path. |
105 obj = fastliteralcase(get_standard_literal(), "elliot"); | 157 obj = fastliteralcase(get_standard_literal(), "elliot"); |
106 assertKind(elements_kind.fast, obj); | 158 assertKind(elements_kind.fast, obj); |
107 | |
108 // This fails until we turn off optimistic transitions to the | 159 // This fails until we turn off optimistic transitions to the |
109 // most general elements kind seen on keyed stores. It's a goal | 160 // most general elements kind seen on keyed stores. It's a goal |
110 // to turn it off, but for now we need it. | 161 // to turn it off, but for now we need it. |
111 // obj = fastliteralcase(3); | 162 // obj = fastliteralcase(3); |
112 // assertKind(elements_kind.fast_double, obj); | 163 // assertKind(elements_kind.fast_double, obj); |
113 | 164 |
114 function fastliteralcase_smifast(value) { | 165 function fastliteralcase_smifast(value) { |
115 var literal = [1, 2, 3, 4]; | 166 var literal = [1, 2, 3, 4]; |
116 literal[0] = value; | 167 literal[0] = value; |
117 return literal; | 168 return literal; |
118 } | 169 } |
119 | 170 |
120 obj = fastliteralcase_smifast(1); | 171 obj = fastliteralcase_smifast(1); |
121 assertKind(elements_kind.fast_smi_only, obj); | 172 assertKind(elements_kind.fast_smi_only, obj); |
122 obj = fastliteralcase_smifast("carter"); | 173 obj = fastliteralcase_smifast("carter"); |
123 assertKind(elements_kind.fast, obj); | 174 assertKind(elements_kind.fast, obj); |
124 obj = fastliteralcase_smifast(2); | 175 obj = fastliteralcase_smifast(2); |
125 assertKind(elements_kind.fast, obj); | 176 assertKind(elements_kind.fast, obj); |
| 177 |
| 178 if (optimize_constructed_arrays) { |
| 179 function newarraycase_smidouble(value) { |
| 180 var a = new Array(); |
| 181 a[0] = value; |
| 182 return a; |
| 183 } |
| 184 |
| 185 // Case: new Array() as allocation site, smi->double |
| 186 obj = newarraycase_smidouble(1); |
| 187 assertKind(elements_kind.fast_smi_only, obj); |
| 188 obj = newarraycase_smidouble(1.5); |
| 189 assertKind(elements_kind.fast_double, obj); |
| 190 obj = newarraycase_smidouble(2); |
| 191 assertKind(elements_kind.fast_double, obj); |
| 192 |
| 193 function newarraycase_smiobj(value) { |
| 194 var a = new Array(); |
| 195 a[0] = value; |
| 196 return a; |
| 197 } |
| 198 |
| 199 // Case: new Array() as allocation site, smi->fast |
| 200 obj = newarraycase_smiobj(1); |
| 201 assertKind(elements_kind.fast_smi_only, obj); |
| 202 obj = newarraycase_smiobj("gloria"); |
| 203 assertKind(elements_kind.fast, obj); |
| 204 obj = newarraycase_smiobj(2); |
| 205 assertKind(elements_kind.fast, obj); |
| 206 |
| 207 function newarraycase_length_smidouble(value) { |
| 208 var a = new Array(3); |
| 209 a[0] = value; |
| 210 return a; |
| 211 } |
| 212 |
| 213 // Case: new Array(length) as allocation site |
| 214 obj = newarraycase_length_smidouble(1); |
| 215 assertKind(elements_kind.fast_smi_only, obj); |
| 216 obj = newarraycase_length_smidouble(1.5); |
| 217 assertKind(elements_kind.fast_double, obj); |
| 218 obj = newarraycase_length_smidouble(2); |
| 219 assertKind(elements_kind.fast_double, obj); |
| 220 |
| 221 // Try to continue the transition to fast object, but |
| 222 // we will not pretransition from double->fast, because |
| 223 // it may hurt performance ("poisoning"). |
| 224 obj = newarraycase_length_smidouble("coates"); |
| 225 assertKind(elements_kind.fast, obj); |
| 226 obj = newarraycase_length_smidouble(2.5); |
| 227 // However, because of optimistic transitions, we will |
| 228 // transition to the most general kind of elements kind found, |
| 229 // therefore I can't count on this assert yet. |
| 230 // assertKind(elements_kind.fast_double, obj); |
| 231 |
| 232 function newarraycase_length_smiobj(value) { |
| 233 var a = new Array(3); |
| 234 a[0] = value; |
| 235 return a; |
| 236 } |
| 237 |
| 238 // Case: new Array(<length>) as allocation site, smi->fast |
| 239 obj = newarraycase_length_smiobj(1); |
| 240 assertKind(elements_kind.fast_smi_only, obj); |
| 241 obj = newarraycase_length_smiobj("gloria"); |
| 242 assertKind(elements_kind.fast, obj); |
| 243 obj = newarraycase_length_smiobj(2); |
| 244 assertKind(elements_kind.fast, obj); |
| 245 |
| 246 function newarraycase_list_smidouble(value) { |
| 247 var a = new Array(1, 2, 3); |
| 248 a[0] = value; |
| 249 return a; |
| 250 } |
| 251 |
| 252 obj = newarraycase_list_smidouble(1); |
| 253 assertKind(elements_kind.fast_smi_only, obj); |
| 254 obj = newarraycase_list_smidouble(1.5); |
| 255 assertKind(elements_kind.fast_double, obj); |
| 256 obj = newarraycase_list_smidouble(2); |
| 257 assertKind(elements_kind.fast_double, obj); |
| 258 |
| 259 function newarraycase_list_smiobj(value) { |
| 260 var a = new Array(4, 5, 6); |
| 261 a[0] = value; |
| 262 return a; |
| 263 } |
| 264 |
| 265 obj = newarraycase_list_smiobj(1); |
| 266 assertKind(elements_kind.fast_smi_only, obj); |
| 267 obj = newarraycase_list_smiobj("coates"); |
| 268 assertKind(elements_kind.fast, obj); |
| 269 obj = newarraycase_list_smiobj(2); |
| 270 assertKind(elements_kind.fast, obj); |
| 271 } |
126 } | 272 } |
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