OLD | NEW |
1 // Copyright 2006-2008 the V8 project authors. All rights reserved. | 1 // Copyright 2006-2008 the V8 project authors. All rights reserved. |
2 // Use of this source code is governed by a BSD-style license that can be | 2 // Use of this source code is governed by a BSD-style license that can be |
3 // found in the LICENSE file. | 3 // found in the LICENSE file. |
4 | 4 |
5 // This files contains runtime support implemented in JavaScript. | 5 // This files contains runtime support implemented in JavaScript. |
6 | 6 |
7 // CAUTION: Some of the functions specified in this file are called | 7 // CAUTION: Some of the functions specified in this file are called |
8 // directly from compiled code. These are the functions with names in | 8 // directly from compiled code. These are the functions with names in |
9 // ALL CAPS. The compiled code passes the first argument in 'this'. | 9 // ALL CAPS. The compiled code passes the first argument in 'this'. |
10 | 10 |
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48 var x = this; | 48 var x = this; |
49 | 49 |
50 while (true) { | 50 while (true) { |
51 if (IS_NUMBER(x)) { | 51 if (IS_NUMBER(x)) { |
52 while (true) { | 52 while (true) { |
53 if (IS_NUMBER(y)) return %NumberEquals(x, y); | 53 if (IS_NUMBER(y)) return %NumberEquals(x, y); |
54 if (IS_NULL_OR_UNDEFINED(y)) return 1; // not equal | 54 if (IS_NULL_OR_UNDEFINED(y)) return 1; // not equal |
55 if (!IS_SPEC_OBJECT(y)) { | 55 if (!IS_SPEC_OBJECT(y)) { |
56 if (IS_SYMBOL(y) || IS_SIMD_VALUE(y)) return 1; // not equal | 56 if (IS_SYMBOL(y) || IS_SIMD_VALUE(y)) return 1; // not equal |
57 // String or boolean. | 57 // String or boolean. |
58 return %NumberEquals(x, %$toNumber(y)); | 58 return %NumberEquals(x, %to_number_fun(y)); |
59 } | 59 } |
60 y = %$toPrimitive(y, NO_HINT); | 60 y = %to_primitive(y, NO_HINT); |
61 } | 61 } |
62 } else if (IS_STRING(x)) { | 62 } else if (IS_STRING(x)) { |
63 while (true) { | 63 while (true) { |
64 if (IS_STRING(y)) return %StringEquals(x, y); | 64 if (IS_STRING(y)) return %StringEquals(x, y); |
65 if (IS_NUMBER(y)) return %NumberEquals(%$toNumber(x), y); | 65 if (IS_NUMBER(y)) return %NumberEquals(%to_number_fun(x), y); |
66 if (IS_BOOLEAN(y)) return %NumberEquals(%$toNumber(x), %$toNumber(y)); | 66 if (IS_BOOLEAN(y)) return %NumberEquals(%to_number_fun(x), %to_number_fu
n(y)); |
67 if (IS_NULL_OR_UNDEFINED(y)) return 1; // not equal | 67 if (IS_NULL_OR_UNDEFINED(y)) return 1; // not equal |
68 if (IS_SYMBOL(y) || IS_SIMD_VALUE(y)) return 1; // not equal | 68 if (IS_SYMBOL(y) || IS_SIMD_VALUE(y)) return 1; // not equal |
69 y = %$toPrimitive(y, NO_HINT); | 69 y = %to_primitive(y, NO_HINT); |
70 } | 70 } |
71 } else if (IS_SYMBOL(x)) { | 71 } else if (IS_SYMBOL(x)) { |
72 if (IS_SYMBOL(y)) return %_ObjectEquals(x, y) ? 0 : 1; | 72 if (IS_SYMBOL(y)) return %_ObjectEquals(x, y) ? 0 : 1; |
73 return 1; // not equal | 73 return 1; // not equal |
74 } else if (IS_BOOLEAN(x)) { | 74 } else if (IS_BOOLEAN(x)) { |
75 if (IS_BOOLEAN(y)) return %_ObjectEquals(x, y) ? 0 : 1; | 75 if (IS_BOOLEAN(y)) return %_ObjectEquals(x, y) ? 0 : 1; |
76 if (IS_NULL_OR_UNDEFINED(y)) return 1; | 76 if (IS_NULL_OR_UNDEFINED(y)) return 1; |
77 if (IS_NUMBER(y)) return %NumberEquals(%$toNumber(x), y); | 77 if (IS_NUMBER(y)) return %NumberEquals(%to_number_fun(x), y); |
78 if (IS_STRING(y)) return %NumberEquals(%$toNumber(x), %$toNumber(y)); | 78 if (IS_STRING(y)) return %NumberEquals(%to_number_fun(x), %to_number_fun(y
)); |
79 if (IS_SYMBOL(y) || IS_SIMD_VALUE(y)) return 1; // not equal | 79 if (IS_SYMBOL(y) || IS_SIMD_VALUE(y)) return 1; // not equal |
80 // y is object. | 80 // y is object. |
81 x = %$toNumber(x); | 81 x = %to_number_fun(x); |
82 y = %$toPrimitive(y, NO_HINT); | 82 y = %to_primitive(y, NO_HINT); |
83 } else if (IS_NULL_OR_UNDEFINED(x)) { | 83 } else if (IS_NULL_OR_UNDEFINED(x)) { |
84 return IS_NULL_OR_UNDEFINED(y) ? 0 : 1; | 84 return IS_NULL_OR_UNDEFINED(y) ? 0 : 1; |
85 } else if (IS_SIMD_VALUE(x)) { | 85 } else if (IS_SIMD_VALUE(x)) { |
86 if (!IS_SIMD_VALUE(y)) return 1; // not equal | 86 if (!IS_SIMD_VALUE(y)) return 1; // not equal |
87 return %SimdEquals(x, y); | 87 return %SimdEquals(x, y); |
88 } else { | 88 } else { |
89 // x is an object. | 89 // x is an object. |
90 if (IS_SPEC_OBJECT(y)) return %_ObjectEquals(x, y) ? 0 : 1; | 90 if (IS_SPEC_OBJECT(y)) return %_ObjectEquals(x, y) ? 0 : 1; |
91 if (IS_NULL_OR_UNDEFINED(y)) return 1; // not equal | 91 if (IS_NULL_OR_UNDEFINED(y)) return 1; // not equal |
92 if (IS_BOOLEAN(y)) { | 92 if (IS_BOOLEAN(y)) { |
93 y = %$toNumber(y); | 93 y = %to_number_fun(y); |
94 } else if (IS_SYMBOL(y) || IS_SIMD_VALUE(y)) { | 94 } else if (IS_SYMBOL(y) || IS_SIMD_VALUE(y)) { |
95 return 1; // not equal | 95 return 1; // not equal |
96 } | 96 } |
97 x = %$toPrimitive(x, NO_HINT); | 97 x = %to_primitive(x, NO_HINT); |
98 } | 98 } |
99 } | 99 } |
100 } | 100 } |
101 | 101 |
102 | 102 |
103 // ECMA-262, section 11.8.5, page 53. The 'ncr' parameter is used as | 103 // ECMA-262, section 11.8.5, page 53. The 'ncr' parameter is used as |
104 // the result when either (or both) the operands are NaN. | 104 // the result when either (or both) the operands are NaN. |
105 function COMPARE(x, ncr) { | 105 function COMPARE(x, ncr) { |
106 var left; | 106 var left; |
107 var right; | 107 var right; |
108 // Fast cases for string, numbers and undefined compares. | 108 // Fast cases for string, numbers and undefined compares. |
109 if (IS_STRING(this)) { | 109 if (IS_STRING(this)) { |
110 if (IS_STRING(x)) return %_StringCompare(this, x); | 110 if (IS_STRING(x)) return %_StringCompare(this, x); |
111 if (IS_UNDEFINED(x)) return ncr; | 111 if (IS_UNDEFINED(x)) return ncr; |
112 left = this; | 112 left = this; |
113 } else if (IS_NUMBER(this)) { | 113 } else if (IS_NUMBER(this)) { |
114 if (IS_NUMBER(x)) return %NumberCompare(this, x, ncr); | 114 if (IS_NUMBER(x)) return %NumberCompare(this, x, ncr); |
115 if (IS_UNDEFINED(x)) return ncr; | 115 if (IS_UNDEFINED(x)) return ncr; |
116 left = this; | 116 left = this; |
117 } else if (IS_UNDEFINED(this)) { | 117 } else if (IS_UNDEFINED(this)) { |
118 if (!IS_UNDEFINED(x)) { | 118 if (!IS_UNDEFINED(x)) { |
119 %$toPrimitive(x, NUMBER_HINT); | 119 %to_primitive(x, NUMBER_HINT); |
120 } | 120 } |
121 return ncr; | 121 return ncr; |
122 } else if (IS_UNDEFINED(x)) { | 122 } else if (IS_UNDEFINED(x)) { |
123 %$toPrimitive(this, NUMBER_HINT); | 123 %to_primitive(this, NUMBER_HINT); |
124 return ncr; | 124 return ncr; |
125 } else { | 125 } else { |
126 left = %$toPrimitive(this, NUMBER_HINT); | 126 left = %to_primitive(this, NUMBER_HINT); |
127 } | 127 } |
128 | 128 |
129 right = %$toPrimitive(x, NUMBER_HINT); | 129 right = %to_primitive(x, NUMBER_HINT); |
130 if (IS_STRING(left) && IS_STRING(right)) { | 130 if (IS_STRING(left) && IS_STRING(right)) { |
131 return %_StringCompare(left, right); | 131 return %_StringCompare(left, right); |
132 } else { | 132 } else { |
133 var left_number = %$toNumber(left); | 133 var left_number = %to_number_fun(left); |
134 var right_number = %$toNumber(right); | 134 var right_number = %to_number_fun(right); |
135 if (NUMBER_IS_NAN(left_number) || NUMBER_IS_NAN(right_number)) return ncr; | 135 if (NUMBER_IS_NAN(left_number) || NUMBER_IS_NAN(right_number)) return ncr; |
136 return %NumberCompare(left_number, right_number, ncr); | 136 return %NumberCompare(left_number, right_number, ncr); |
137 } | 137 } |
138 } | 138 } |
139 | 139 |
140 // Strong mode COMPARE throws if an implicit conversion would be performed | 140 // Strong mode COMPARE throws if an implicit conversion would be performed |
141 function COMPARE_STRONG(x, ncr) { | 141 function COMPARE_STRONG(x, ncr) { |
142 if (IS_STRING(this) && IS_STRING(x)) return %_StringCompare(this, x); | 142 if (IS_STRING(this) && IS_STRING(x)) return %_StringCompare(this, x); |
143 if (IS_NUMBER(this) && IS_NUMBER(x)) return %NumberCompare(this, x, ncr); | 143 if (IS_NUMBER(this) && IS_NUMBER(x)) return %NumberCompare(this, x, ncr); |
144 | 144 |
145 throw %MakeTypeError(kStrongImplicitConversion); | 145 throw %make_type_error(kStrongImplicitConversion); |
146 } | 146 } |
147 | 147 |
148 | 148 |
149 | 149 |
150 /* ----------------------------------- | 150 /* ----------------------------------- |
151 - - - A r i t h m e t i c - - - | 151 - - - A r i t h m e t i c - - - |
152 ----------------------------------- | 152 ----------------------------------- |
153 */ | 153 */ |
154 | 154 |
155 // ECMA-262, section 11.6.1, page 50. | 155 // ECMA-262, section 11.6.1, page 50. |
156 function ADD(x) { | 156 function ADD(x) { |
157 // Fast case: Check for number operands and do the addition. | 157 // Fast case: Check for number operands and do the addition. |
158 if (IS_NUMBER(this) && IS_NUMBER(x)) return %NumberAdd(this, x); | 158 if (IS_NUMBER(this) && IS_NUMBER(x)) return %NumberAdd(this, x); |
159 if (IS_STRING(this) && IS_STRING(x)) return %_StringAdd(this, x); | 159 if (IS_STRING(this) && IS_STRING(x)) return %_StringAdd(this, x); |
160 | 160 |
161 // Default implementation. | 161 // Default implementation. |
162 var a = %$toPrimitive(this, NO_HINT); | 162 var a = %to_primitive(this, NO_HINT); |
163 var b = %$toPrimitive(x, NO_HINT); | 163 var b = %to_primitive(x, NO_HINT); |
164 | 164 |
165 if (IS_STRING(a)) { | 165 if (IS_STRING(a)) { |
166 return %_StringAdd(a, %$toString(b)); | 166 return %_StringAdd(a, %to_string_fun(b)); |
167 } else if (IS_STRING(b)) { | 167 } else if (IS_STRING(b)) { |
168 return %_StringAdd(%$nonStringToString(a), b); | 168 return %_StringAdd(%non_string_to_string(a), b); |
169 } else { | 169 } else { |
170 return %NumberAdd(%$toNumber(a), %$toNumber(b)); | 170 return %NumberAdd(%to_number_fun(a), %to_number_fun(b)); |
171 } | 171 } |
172 } | 172 } |
173 | 173 |
174 | 174 |
175 // Strong mode ADD throws if an implicit conversion would be performed | 175 // Strong mode ADD throws if an implicit conversion would be performed |
176 function ADD_STRONG(x) { | 176 function ADD_STRONG(x) { |
177 if (IS_NUMBER(this) && IS_NUMBER(x)) return %NumberAdd(this, x); | 177 if (IS_NUMBER(this) && IS_NUMBER(x)) return %NumberAdd(this, x); |
178 if (IS_STRING(this) && IS_STRING(x)) return %_StringAdd(this, x); | 178 if (IS_STRING(this) && IS_STRING(x)) return %_StringAdd(this, x); |
179 | 179 |
180 throw %MakeTypeError(kStrongImplicitConversion); | 180 throw %make_type_error(kStrongImplicitConversion); |
181 } | 181 } |
182 | 182 |
183 | 183 |
184 // Left operand (this) is already a string. | 184 // Left operand (this) is already a string. |
185 function STRING_ADD_LEFT(y) { | 185 function STRING_ADD_LEFT(y) { |
186 if (!IS_STRING(y)) { | 186 if (!IS_STRING(y)) { |
187 if (IS_STRING_WRAPPER(y) && %_IsStringWrapperSafeForDefaultValueOf(y)) { | 187 if (IS_STRING_WRAPPER(y) && %_IsStringWrapperSafeForDefaultValueOf(y)) { |
188 y = %_ValueOf(y); | 188 y = %_ValueOf(y); |
189 } else { | 189 } else { |
190 y = IS_NUMBER(y) | 190 y = IS_NUMBER(y) |
191 ? %_NumberToString(y) | 191 ? %_NumberToString(y) |
192 : %$toString(%$toPrimitive(y, NO_HINT)); | 192 : %to_string_fun(%to_primitive(y, NO_HINT)); |
193 } | 193 } |
194 } | 194 } |
195 return %_StringAdd(this, y); | 195 return %_StringAdd(this, y); |
196 } | 196 } |
197 | 197 |
198 | 198 |
199 // Right operand (y) is already a string. | 199 // Right operand (y) is already a string. |
200 function STRING_ADD_RIGHT(y) { | 200 function STRING_ADD_RIGHT(y) { |
201 var x = this; | 201 var x = this; |
202 if (!IS_STRING(x)) { | 202 if (!IS_STRING(x)) { |
203 if (IS_STRING_WRAPPER(x) && %_IsStringWrapperSafeForDefaultValueOf(x)) { | 203 if (IS_STRING_WRAPPER(x) && %_IsStringWrapperSafeForDefaultValueOf(x)) { |
204 x = %_ValueOf(x); | 204 x = %_ValueOf(x); |
205 } else { | 205 } else { |
206 x = IS_NUMBER(x) | 206 x = IS_NUMBER(x) |
207 ? %_NumberToString(x) | 207 ? %_NumberToString(x) |
208 : %$toString(%$toPrimitive(x, NO_HINT)); | 208 : %to_string_fun(%to_primitive(x, NO_HINT)); |
209 } | 209 } |
210 } | 210 } |
211 return %_StringAdd(x, y); | 211 return %_StringAdd(x, y); |
212 } | 212 } |
213 | 213 |
214 | 214 |
215 // ECMA-262, section 11.6.2, page 50. | 215 // ECMA-262, section 11.6.2, page 50. |
216 function SUB(y) { | 216 function SUB(y) { |
217 var x = IS_NUMBER(this) ? this : %$nonNumberToNumber(this); | 217 var x = IS_NUMBER(this) ? this : %non_number_to_number(this); |
218 if (!IS_NUMBER(y)) y = %$nonNumberToNumber(y); | 218 if (!IS_NUMBER(y)) y = %non_number_to_number(y); |
219 return %NumberSub(x, y); | 219 return %NumberSub(x, y); |
220 } | 220 } |
221 | 221 |
222 | 222 |
223 // Strong mode SUB throws if an implicit conversion would be performed | 223 // Strong mode SUB throws if an implicit conversion would be performed |
224 function SUB_STRONG(y) { | 224 function SUB_STRONG(y) { |
225 if (IS_NUMBER(this) && IS_NUMBER(y)) { | 225 if (IS_NUMBER(this) && IS_NUMBER(y)) { |
226 return %NumberSub(this, y); | 226 return %NumberSub(this, y); |
227 } | 227 } |
228 throw %MakeTypeError(kStrongImplicitConversion); | 228 throw %make_type_error(kStrongImplicitConversion); |
229 } | 229 } |
230 | 230 |
231 | 231 |
232 // ECMA-262, section 11.5.1, page 48. | 232 // ECMA-262, section 11.5.1, page 48. |
233 function MUL(y) { | 233 function MUL(y) { |
234 var x = IS_NUMBER(this) ? this : %$nonNumberToNumber(this); | 234 var x = IS_NUMBER(this) ? this : %non_number_to_number(this); |
235 if (!IS_NUMBER(y)) y = %$nonNumberToNumber(y); | 235 if (!IS_NUMBER(y)) y = %non_number_to_number(y); |
236 return %NumberMul(x, y); | 236 return %NumberMul(x, y); |
237 } | 237 } |
238 | 238 |
239 | 239 |
240 // Strong mode MUL throws if an implicit conversion would be performed | 240 // Strong mode MUL throws if an implicit conversion would be performed |
241 function MUL_STRONG(y) { | 241 function MUL_STRONG(y) { |
242 if (IS_NUMBER(this) && IS_NUMBER(y)) { | 242 if (IS_NUMBER(this) && IS_NUMBER(y)) { |
243 return %NumberMul(this, y); | 243 return %NumberMul(this, y); |
244 } | 244 } |
245 throw %MakeTypeError(kStrongImplicitConversion); | 245 throw %make_type_error(kStrongImplicitConversion); |
246 } | 246 } |
247 | 247 |
248 | 248 |
249 // ECMA-262, section 11.5.2, page 49. | 249 // ECMA-262, section 11.5.2, page 49. |
250 function DIV(y) { | 250 function DIV(y) { |
251 var x = IS_NUMBER(this) ? this : %$nonNumberToNumber(this); | 251 var x = IS_NUMBER(this) ? this : %non_number_to_number(this); |
252 if (!IS_NUMBER(y)) y = %$nonNumberToNumber(y); | 252 if (!IS_NUMBER(y)) y = %non_number_to_number(y); |
253 return %NumberDiv(x, y); | 253 return %NumberDiv(x, y); |
254 } | 254 } |
255 | 255 |
256 | 256 |
257 // Strong mode DIV throws if an implicit conversion would be performed | 257 // Strong mode DIV throws if an implicit conversion would be performed |
258 function DIV_STRONG(y) { | 258 function DIV_STRONG(y) { |
259 if (IS_NUMBER(this) && IS_NUMBER(y)) { | 259 if (IS_NUMBER(this) && IS_NUMBER(y)) { |
260 return %NumberDiv(this, y); | 260 return %NumberDiv(this, y); |
261 } | 261 } |
262 throw %MakeTypeError(kStrongImplicitConversion); | 262 throw %make_type_error(kStrongImplicitConversion); |
263 } | 263 } |
264 | 264 |
265 | 265 |
266 // ECMA-262, section 11.5.3, page 49. | 266 // ECMA-262, section 11.5.3, page 49. |
267 function MOD(y) { | 267 function MOD(y) { |
268 var x = IS_NUMBER(this) ? this : %$nonNumberToNumber(this); | 268 var x = IS_NUMBER(this) ? this : %non_number_to_number(this); |
269 if (!IS_NUMBER(y)) y = %$nonNumberToNumber(y); | 269 if (!IS_NUMBER(y)) y = %non_number_to_number(y); |
270 return %NumberMod(x, y); | 270 return %NumberMod(x, y); |
271 } | 271 } |
272 | 272 |
273 | 273 |
274 // Strong mode MOD throws if an implicit conversion would be performed | 274 // Strong mode MOD throws if an implicit conversion would be performed |
275 function MOD_STRONG(y) { | 275 function MOD_STRONG(y) { |
276 if (IS_NUMBER(this) && IS_NUMBER(y)) { | 276 if (IS_NUMBER(this) && IS_NUMBER(y)) { |
277 return %NumberMod(this, y); | 277 return %NumberMod(this, y); |
278 } | 278 } |
279 throw %MakeTypeError(kStrongImplicitConversion); | 279 throw %make_type_error(kStrongImplicitConversion); |
280 } | 280 } |
281 | 281 |
282 | 282 |
283 /* ------------------------------------------- | 283 /* ------------------------------------------- |
284 - - - B i t o p e r a t i o n s - - - | 284 - - - B i t o p e r a t i o n s - - - |
285 ------------------------------------------- | 285 ------------------------------------------- |
286 */ | 286 */ |
287 | 287 |
288 // ECMA-262, section 11.10, page 57. | 288 // ECMA-262, section 11.10, page 57. |
289 function BIT_OR(y) { | 289 function BIT_OR(y) { |
290 var x = IS_NUMBER(this) ? this : %$nonNumberToNumber(this); | 290 var x = IS_NUMBER(this) ? this : %non_number_to_number(this); |
291 if (!IS_NUMBER(y)) y = %$nonNumberToNumber(y); | 291 if (!IS_NUMBER(y)) y = %non_number_to_number(y); |
292 return %NumberOr(x, y); | 292 return %NumberOr(x, y); |
293 } | 293 } |
294 | 294 |
295 | 295 |
296 // Strong mode BIT_OR throws if an implicit conversion would be performed | 296 // Strong mode BIT_OR throws if an implicit conversion would be performed |
297 function BIT_OR_STRONG(y) { | 297 function BIT_OR_STRONG(y) { |
298 if (IS_NUMBER(this) && IS_NUMBER(y)) { | 298 if (IS_NUMBER(this) && IS_NUMBER(y)) { |
299 return %NumberOr(this, y); | 299 return %NumberOr(this, y); |
300 } | 300 } |
301 throw %MakeTypeError(kStrongImplicitConversion); | 301 throw %make_type_error(kStrongImplicitConversion); |
302 } | 302 } |
303 | 303 |
304 | 304 |
305 // ECMA-262, section 11.10, page 57. | 305 // ECMA-262, section 11.10, page 57. |
306 function BIT_AND(y) { | 306 function BIT_AND(y) { |
307 var x; | 307 var x; |
308 if (IS_NUMBER(this)) { | 308 if (IS_NUMBER(this)) { |
309 x = this; | 309 x = this; |
310 if (!IS_NUMBER(y)) y = %$nonNumberToNumber(y); | 310 if (!IS_NUMBER(y)) y = %non_number_to_number(y); |
311 } else { | 311 } else { |
312 x = %$nonNumberToNumber(this); | 312 x = %non_number_to_number(this); |
313 // Make sure to convert the right operand to a number before | 313 // Make sure to convert the right operand to a number before |
314 // bailing out in the fast case, but after converting the | 314 // bailing out in the fast case, but after converting the |
315 // left operand. This ensures that valueOf methods on the right | 315 // left operand. This ensures that valueOf methods on the right |
316 // operand are always executed. | 316 // operand are always executed. |
317 if (!IS_NUMBER(y)) y = %$nonNumberToNumber(y); | 317 if (!IS_NUMBER(y)) y = %non_number_to_number(y); |
318 // Optimize for the case where we end up AND'ing a value | 318 // Optimize for the case where we end up AND'ing a value |
319 // that doesn't convert to a number. This is common in | 319 // that doesn't convert to a number. This is common in |
320 // certain benchmarks. | 320 // certain benchmarks. |
321 if (NUMBER_IS_NAN(x)) return 0; | 321 if (NUMBER_IS_NAN(x)) return 0; |
322 } | 322 } |
323 return %NumberAnd(x, y); | 323 return %NumberAnd(x, y); |
324 } | 324 } |
325 | 325 |
326 | 326 |
327 // Strong mode BIT_AND throws if an implicit conversion would be performed | 327 // Strong mode BIT_AND throws if an implicit conversion would be performed |
328 function BIT_AND_STRONG(y) { | 328 function BIT_AND_STRONG(y) { |
329 if (IS_NUMBER(this) && IS_NUMBER(y)) { | 329 if (IS_NUMBER(this) && IS_NUMBER(y)) { |
330 return %NumberAnd(this, y); | 330 return %NumberAnd(this, y); |
331 } | 331 } |
332 throw %MakeTypeError(kStrongImplicitConversion); | 332 throw %make_type_error(kStrongImplicitConversion); |
333 } | 333 } |
334 | 334 |
335 | 335 |
336 // ECMA-262, section 11.10, page 57. | 336 // ECMA-262, section 11.10, page 57. |
337 function BIT_XOR(y) { | 337 function BIT_XOR(y) { |
338 var x = IS_NUMBER(this) ? this : %$nonNumberToNumber(this); | 338 var x = IS_NUMBER(this) ? this : %non_number_to_number(this); |
339 if (!IS_NUMBER(y)) y = %$nonNumberToNumber(y); | 339 if (!IS_NUMBER(y)) y = %non_number_to_number(y); |
340 return %NumberXor(x, y); | 340 return %NumberXor(x, y); |
341 } | 341 } |
342 | 342 |
343 | 343 |
344 // Strong mode BIT_XOR throws if an implicit conversion would be performed | 344 // Strong mode BIT_XOR throws if an implicit conversion would be performed |
345 function BIT_XOR_STRONG(y) { | 345 function BIT_XOR_STRONG(y) { |
346 if (IS_NUMBER(this) && IS_NUMBER(y)) { | 346 if (IS_NUMBER(this) && IS_NUMBER(y)) { |
347 return %NumberXor(this, y); | 347 return %NumberXor(this, y); |
348 } | 348 } |
349 throw %MakeTypeError(kStrongImplicitConversion); | 349 throw %make_type_error(kStrongImplicitConversion); |
350 } | 350 } |
351 | 351 |
352 | 352 |
353 // ECMA-262, section 11.7.1, page 51. | 353 // ECMA-262, section 11.7.1, page 51. |
354 function SHL(y) { | 354 function SHL(y) { |
355 var x = IS_NUMBER(this) ? this : %$nonNumberToNumber(this); | 355 var x = IS_NUMBER(this) ? this : %non_number_to_number(this); |
356 if (!IS_NUMBER(y)) y = %$nonNumberToNumber(y); | 356 if (!IS_NUMBER(y)) y = %non_number_to_number(y); |
357 return %NumberShl(x, y); | 357 return %NumberShl(x, y); |
358 } | 358 } |
359 | 359 |
360 | 360 |
361 // Strong mode SHL throws if an implicit conversion would be performed | 361 // Strong mode SHL throws if an implicit conversion would be performed |
362 function SHL_STRONG(y) { | 362 function SHL_STRONG(y) { |
363 if (IS_NUMBER(this) && IS_NUMBER(y)) { | 363 if (IS_NUMBER(this) && IS_NUMBER(y)) { |
364 return %NumberShl(this, y); | 364 return %NumberShl(this, y); |
365 } | 365 } |
366 throw %MakeTypeError(kStrongImplicitConversion); | 366 throw %make_type_error(kStrongImplicitConversion); |
367 } | 367 } |
368 | 368 |
369 | 369 |
370 // ECMA-262, section 11.7.2, page 51. | 370 // ECMA-262, section 11.7.2, page 51. |
371 function SAR(y) { | 371 function SAR(y) { |
372 var x; | 372 var x; |
373 if (IS_NUMBER(this)) { | 373 if (IS_NUMBER(this)) { |
374 x = this; | 374 x = this; |
375 if (!IS_NUMBER(y)) y = %$nonNumberToNumber(y); | 375 if (!IS_NUMBER(y)) y = %non_number_to_number(y); |
376 } else { | 376 } else { |
377 x = %$nonNumberToNumber(this); | 377 x = %non_number_to_number(this); |
378 // Make sure to convert the right operand to a number before | 378 // Make sure to convert the right operand to a number before |
379 // bailing out in the fast case, but after converting the | 379 // bailing out in the fast case, but after converting the |
380 // left operand. This ensures that valueOf methods on the right | 380 // left operand. This ensures that valueOf methods on the right |
381 // operand are always executed. | 381 // operand are always executed. |
382 if (!IS_NUMBER(y)) y = %$nonNumberToNumber(y); | 382 if (!IS_NUMBER(y)) y = %non_number_to_number(y); |
383 // Optimize for the case where we end up shifting a value | 383 // Optimize for the case where we end up shifting a value |
384 // that doesn't convert to a number. This is common in | 384 // that doesn't convert to a number. This is common in |
385 // certain benchmarks. | 385 // certain benchmarks. |
386 if (NUMBER_IS_NAN(x)) return 0; | 386 if (NUMBER_IS_NAN(x)) return 0; |
387 } | 387 } |
388 return %NumberSar(x, y); | 388 return %NumberSar(x, y); |
389 } | 389 } |
390 | 390 |
391 | 391 |
392 // Strong mode SAR throws if an implicit conversion would be performed | 392 // Strong mode SAR throws if an implicit conversion would be performed |
393 function SAR_STRONG(y) { | 393 function SAR_STRONG(y) { |
394 if (IS_NUMBER(this) && IS_NUMBER(y)) { | 394 if (IS_NUMBER(this) && IS_NUMBER(y)) { |
395 return %NumberSar(this, y); | 395 return %NumberSar(this, y); |
396 } | 396 } |
397 throw %MakeTypeError(kStrongImplicitConversion); | 397 throw %make_type_error(kStrongImplicitConversion); |
398 } | 398 } |
399 | 399 |
400 | 400 |
401 // ECMA-262, section 11.7.3, page 52. | 401 // ECMA-262, section 11.7.3, page 52. |
402 function SHR(y) { | 402 function SHR(y) { |
403 var x = IS_NUMBER(this) ? this : %$nonNumberToNumber(this); | 403 var x = IS_NUMBER(this) ? this : %non_number_to_number(this); |
404 if (!IS_NUMBER(y)) y = %$nonNumberToNumber(y); | 404 if (!IS_NUMBER(y)) y = %non_number_to_number(y); |
405 return %NumberShr(x, y); | 405 return %NumberShr(x, y); |
406 } | 406 } |
407 | 407 |
408 | 408 |
409 // Strong mode SHR throws if an implicit conversion would be performed | 409 // Strong mode SHR throws if an implicit conversion would be performed |
410 function SHR_STRONG(y) { | 410 function SHR_STRONG(y) { |
411 if (IS_NUMBER(this) && IS_NUMBER(y)) { | 411 if (IS_NUMBER(this) && IS_NUMBER(y)) { |
412 return %NumberShr(this, y); | 412 return %NumberShr(this, y); |
413 } | 413 } |
414 throw %MakeTypeError(kStrongImplicitConversion); | 414 throw %make_type_error(kStrongImplicitConversion); |
415 } | 415 } |
416 | 416 |
417 | 417 |
418 /* ----------------------------- | 418 /* ----------------------------- |
419 - - - H e l p e r s - - - | 419 - - - H e l p e r s - - - |
420 ----------------------------- | 420 ----------------------------- |
421 */ | 421 */ |
422 | 422 |
423 // ECMA-262, section 11.8.7, page 54. | 423 // ECMA-262, section 11.8.7, page 54. |
424 function IN(x) { | 424 function IN(x) { |
425 if (!IS_SPEC_OBJECT(x)) { | 425 if (!IS_SPEC_OBJECT(x)) { |
426 throw %MakeTypeError(kInvalidInOperatorUse, this, x); | 426 throw %make_type_error(kInvalidInOperatorUse, this, x); |
427 } | 427 } |
428 if (%_IsNonNegativeSmi(this)) { | 428 if (%_IsNonNegativeSmi(this)) { |
429 if (IS_ARRAY(x) && %_HasFastPackedElements(x)) { | 429 if (IS_ARRAY(x) && %_HasFastPackedElements(x)) { |
430 return this < x.length; | 430 return this < x.length; |
431 } | 431 } |
432 return %HasElement(x, this); | 432 return %HasElement(x, this); |
433 } | 433 } |
434 return %HasProperty(x, %$toName(this)); | 434 return %HasProperty(x, %to_name(this)); |
435 } | 435 } |
436 | 436 |
437 | 437 |
438 function CALL_NON_FUNCTION() { | 438 function CALL_NON_FUNCTION() { |
439 var delegate = %GetFunctionDelegate(this); | 439 var delegate = %GetFunctionDelegate(this); |
440 if (!IS_FUNCTION(delegate)) { | 440 if (!IS_FUNCTION(delegate)) { |
441 var callsite = %RenderCallSite(); | 441 var callsite = %RenderCallSite(); |
442 if (callsite == "") callsite = typeof this; | 442 if (callsite == "") callsite = typeof this; |
443 throw %MakeTypeError(kCalledNonCallable, callsite); | 443 throw %make_type_error(kCalledNonCallable, callsite); |
444 } | 444 } |
445 return %Apply(delegate, this, arguments, 0, %_ArgumentsLength()); | 445 return %Apply(delegate, this, arguments, 0, %_ArgumentsLength()); |
446 } | 446 } |
447 | 447 |
448 | 448 |
449 function CALL_NON_FUNCTION_AS_CONSTRUCTOR() { | 449 function CALL_NON_FUNCTION_AS_CONSTRUCTOR() { |
450 var delegate = %GetConstructorDelegate(this); | 450 var delegate = %GetConstructorDelegate(this); |
451 if (!IS_FUNCTION(delegate)) { | 451 if (!IS_FUNCTION(delegate)) { |
452 var callsite = %RenderCallSite(); | 452 var callsite = %RenderCallSite(); |
453 if (callsite == "") callsite = typeof this; | 453 if (callsite == "") callsite = typeof this; |
454 throw %MakeTypeError(kCalledNonCallable, callsite); | 454 throw %make_type_error(kCalledNonCallable, callsite); |
455 } | 455 } |
456 return %Apply(delegate, this, arguments, 0, %_ArgumentsLength()); | 456 return %Apply(delegate, this, arguments, 0, %_ArgumentsLength()); |
457 } | 457 } |
458 | 458 |
459 | 459 |
460 function CALL_FUNCTION_PROXY() { | 460 function CALL_FUNCTION_PROXY() { |
461 var arity = %_ArgumentsLength() - 1; | 461 var arity = %_ArgumentsLength() - 1; |
462 var proxy = %_Arguments(arity); // The proxy comes in as an additional arg. | 462 var proxy = %_Arguments(arity); // The proxy comes in as an additional arg. |
463 var trap = %GetCallTrap(proxy); | 463 var trap = %GetCallTrap(proxy); |
464 return %Apply(trap, this, arguments, 0, arity); | 464 return %Apply(trap, this, arguments, 0, arity); |
(...skipping 18 matching lines...) Expand all Loading... |
483 IS_SPEC_FUNCTION(this)) { | 483 IS_SPEC_FUNCTION(this)) { |
484 return length; | 484 return length; |
485 } | 485 } |
486 } | 486 } |
487 | 487 |
488 length = (args == null) ? 0 : TO_UINT32(args.length); | 488 length = (args == null) ? 0 : TO_UINT32(args.length); |
489 | 489 |
490 // We can handle any number of apply arguments if the stack is | 490 // We can handle any number of apply arguments if the stack is |
491 // big enough, but sanity check the value to avoid overflow when | 491 // big enough, but sanity check the value to avoid overflow when |
492 // multiplying with pointer size. | 492 // multiplying with pointer size. |
493 if (length > kSafeArgumentsLength) throw %MakeRangeError(kStackOverflow); | 493 if (length > kSafeArgumentsLength) throw %make_range_error(kStackOverflow); |
494 | 494 |
495 if (!IS_SPEC_FUNCTION(this)) { | 495 if (!IS_SPEC_FUNCTION(this)) { |
496 throw %MakeTypeError(kApplyNonFunction, %$toString(this), typeof this); | 496 throw %make_type_error(kApplyNonFunction, %to_string_fun(this), typeof this)
; |
497 } | 497 } |
498 | 498 |
499 // Make sure the arguments list has the right type. | 499 // Make sure the arguments list has the right type. |
500 if (args != null && !IS_SPEC_OBJECT(args)) { | 500 if (args != null && !IS_SPEC_OBJECT(args)) { |
501 throw %MakeTypeError(kWrongArgs, "Function.prototype.apply"); | 501 throw %make_type_error(kWrongArgs, "Function.prototype.apply"); |
502 } | 502 } |
503 | 503 |
504 // Return the length which is the number of arguments to copy to the | 504 // Return the length which is the number of arguments to copy to the |
505 // stack. It is guaranteed to be a small integer at this point. | 505 // stack. It is guaranteed to be a small integer at this point. |
506 return length; | 506 return length; |
507 } | 507 } |
508 | 508 |
509 | 509 |
510 function REFLECT_APPLY_PREPARE(args) { | 510 function REFLECT_APPLY_PREPARE(args) { |
511 var length; | 511 var length; |
512 // First check whether length is a positive Smi and args is an | 512 // First check whether length is a positive Smi and args is an |
513 // array. This is the fast case. If this fails, we do the slow case | 513 // array. This is the fast case. If this fails, we do the slow case |
514 // that takes care of more eventualities. | 514 // that takes care of more eventualities. |
515 if (IS_ARRAY(args)) { | 515 if (IS_ARRAY(args)) { |
516 length = args.length; | 516 length = args.length; |
517 if (%_IsSmi(length) && length >= 0 && length < kSafeArgumentsLength && | 517 if (%_IsSmi(length) && length >= 0 && length < kSafeArgumentsLength && |
518 IS_SPEC_FUNCTION(this)) { | 518 IS_SPEC_FUNCTION(this)) { |
519 return length; | 519 return length; |
520 } | 520 } |
521 } | 521 } |
522 | 522 |
523 if (!IS_SPEC_FUNCTION(this)) { | 523 if (!IS_SPEC_FUNCTION(this)) { |
524 throw %MakeTypeError(kCalledNonCallable, %$toString(this)); | 524 throw %make_type_error(kCalledNonCallable, %to_string_fun(this)); |
525 } | 525 } |
526 | 526 |
527 if (!IS_SPEC_OBJECT(args)) { | 527 if (!IS_SPEC_OBJECT(args)) { |
528 throw %MakeTypeError(kWrongArgs, "Reflect.apply"); | 528 throw %make_type_error(kWrongArgs, "Reflect.apply"); |
529 } | 529 } |
530 | 530 |
531 length = %$toLength(args.length); | 531 length = %to_length_fun(args.length); |
532 | 532 |
533 // We can handle any number of apply arguments if the stack is | 533 // We can handle any number of apply arguments if the stack is |
534 // big enough, but sanity check the value to avoid overflow when | 534 // big enough, but sanity check the value to avoid overflow when |
535 // multiplying with pointer size. | 535 // multiplying with pointer size. |
536 if (length > kSafeArgumentsLength) throw %MakeRangeError(kStackOverflow); | 536 if (length > kSafeArgumentsLength) throw %make_range_error(kStackOverflow); |
537 | 537 |
538 // Return the length which is the number of arguments to copy to the | 538 // Return the length which is the number of arguments to copy to the |
539 // stack. It is guaranteed to be a small integer at this point. | 539 // stack. It is guaranteed to be a small integer at this point. |
540 return length; | 540 return length; |
541 } | 541 } |
542 | 542 |
543 | 543 |
544 function REFLECT_CONSTRUCT_PREPARE( | 544 function REFLECT_CONSTRUCT_PREPARE( |
545 args, newTarget) { | 545 args, newTarget) { |
546 var length; | 546 var length; |
547 var ctorOk = IS_SPEC_FUNCTION(this) && %IsConstructor(this); | 547 var ctorOk = IS_SPEC_FUNCTION(this) && %IsConstructor(this); |
548 var newTargetOk = IS_SPEC_FUNCTION(newTarget) && %IsConstructor(newTarget); | 548 var newTargetOk = IS_SPEC_FUNCTION(newTarget) && %IsConstructor(newTarget); |
549 | 549 |
550 // First check whether length is a positive Smi and args is an | 550 // First check whether length is a positive Smi and args is an |
551 // array. This is the fast case. If this fails, we do the slow case | 551 // array. This is the fast case. If this fails, we do the slow case |
552 // that takes care of more eventualities. | 552 // that takes care of more eventualities. |
553 if (IS_ARRAY(args)) { | 553 if (IS_ARRAY(args)) { |
554 length = args.length; | 554 length = args.length; |
555 if (%_IsSmi(length) && length >= 0 && length < kSafeArgumentsLength && | 555 if (%_IsSmi(length) && length >= 0 && length < kSafeArgumentsLength && |
556 ctorOk && newTargetOk) { | 556 ctorOk && newTargetOk) { |
557 return length; | 557 return length; |
558 } | 558 } |
559 } | 559 } |
560 | 560 |
561 if (!ctorOk) { | 561 if (!ctorOk) { |
562 if (!IS_SPEC_FUNCTION(this)) { | 562 if (!IS_SPEC_FUNCTION(this)) { |
563 throw %MakeTypeError(kCalledNonCallable, %$toString(this)); | 563 throw %make_type_error(kCalledNonCallable, %to_string_fun(this)); |
564 } else { | 564 } else { |
565 throw %MakeTypeError(kNotConstructor, %$toString(this)); | 565 throw %make_type_error(kNotConstructor, %to_string_fun(this)); |
566 } | 566 } |
567 } | 567 } |
568 | 568 |
569 if (!newTargetOk) { | 569 if (!newTargetOk) { |
570 if (!IS_SPEC_FUNCTION(newTarget)) { | 570 if (!IS_SPEC_FUNCTION(newTarget)) { |
571 throw %MakeTypeError(kCalledNonCallable, %$toString(newTarget)); | 571 throw %make_type_error(kCalledNonCallable, %to_string_fun(newTarget)); |
572 } else { | 572 } else { |
573 throw %MakeTypeError(kNotConstructor, %$toString(newTarget)); | 573 throw %make_type_error(kNotConstructor, %to_string_fun(newTarget)); |
574 } | 574 } |
575 } | 575 } |
576 | 576 |
577 if (!IS_SPEC_OBJECT(args)) { | 577 if (!IS_SPEC_OBJECT(args)) { |
578 throw %MakeTypeError(kWrongArgs, "Reflect.construct"); | 578 throw %make_type_error(kWrongArgs, "Reflect.construct"); |
579 } | 579 } |
580 | 580 |
581 length = %$toLength(args.length); | 581 length = %to_length_fun(args.length); |
582 | 582 |
583 // We can handle any number of apply arguments if the stack is | 583 // We can handle any number of apply arguments if the stack is |
584 // big enough, but sanity check the value to avoid overflow when | 584 // big enough, but sanity check the value to avoid overflow when |
585 // multiplying with pointer size. | 585 // multiplying with pointer size. |
586 if (length > kSafeArgumentsLength) throw %MakeRangeError(kStackOverflow); | 586 if (length > kSafeArgumentsLength) throw %make_range_error(kStackOverflow); |
587 | 587 |
588 // Return the length which is the number of arguments to copy to the | 588 // Return the length which is the number of arguments to copy to the |
589 // stack. It is guaranteed to be a small integer at this point. | 589 // stack. It is guaranteed to be a small integer at this point. |
590 return length; | 590 return length; |
591 } | 591 } |
592 | 592 |
593 | 593 |
594 function CONCAT_ITERABLE_TO_ARRAY(iterable) { | 594 function CONCAT_ITERABLE_TO_ARRAY(iterable) { |
595 return %$concatIterableToArray(this, iterable); | 595 return %concat_iterable_to_array(this, iterable); |
596 }; | 596 }; |
597 | 597 |
598 | 598 |
599 function STACK_OVERFLOW(length) { | 599 function STACK_OVERFLOW(length) { |
600 throw %MakeRangeError(kStackOverflow); | 600 throw %make_range_error(kStackOverflow); |
601 } | 601 } |
602 | 602 |
603 | 603 |
604 // Convert the receiver to a number - forward to ToNumber. | 604 // Convert the receiver to a number - forward to ToNumber. |
605 function TO_NUMBER() { | 605 function TO_NUMBER() { |
606 return %$toNumber(this); | 606 return %to_number_fun(this); |
607 } | 607 } |
608 | 608 |
609 | 609 |
610 // Convert the receiver to a string - forward to ToString. | 610 // Convert the receiver to a string - forward to ToString. |
611 function TO_STRING() { | 611 function TO_STRING() { |
612 return %$toString(this); | 612 return %to_string_fun(this); |
613 } | 613 } |
614 | 614 |
615 | 615 |
616 // Convert the receiver to a string or symbol - forward to ToName. | 616 // Convert the receiver to a string or symbol - forward to ToName. |
617 function TO_NAME() { | 617 function TO_NAME() { |
618 return %$toName(this); | 618 return %to_name(this); |
619 } | 619 } |
620 | 620 |
621 | 621 |
622 /* ------------------------------------- | 622 /* ------------------------------------- |
623 - - - C o n v e r s i o n s - - - | 623 - - - C o n v e r s i o n s - - - |
624 ------------------------------------- | 624 ------------------------------------- |
625 */ | 625 */ |
626 | 626 |
627 // ECMA-262, section 9.1, page 30. Use null/undefined for no hint, | 627 // ECMA-262, section 9.1, page 30. Use null/undefined for no hint, |
628 // (1) for number hint, and (2) for string hint. | 628 // (1) for number hint, and (2) for string hint. |
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815 // NOTE: Setting the prototype for Array must take place as early as | 815 // NOTE: Setting the prototype for Array must take place as early as |
816 // possible due to code generation for array literals. When | 816 // possible due to code generation for array literals. When |
817 // generating code for a array literal a boilerplate array is created | 817 // generating code for a array literal a boilerplate array is created |
818 // that is cloned when running the code. It is essential that the | 818 // that is cloned when running the code. It is essential that the |
819 // boilerplate gets the right prototype. | 819 // boilerplate gets the right prototype. |
820 %FunctionSetPrototype(GlobalArray, new GlobalArray(0)); | 820 %FunctionSetPrototype(GlobalArray, new GlobalArray(0)); |
821 | 821 |
822 // ---------------------------------------------------------------------------- | 822 // ---------------------------------------------------------------------------- |
823 // Exports | 823 // Exports |
824 | 824 |
825 $concatIterableToArray = ConcatIterableToArray; | |
826 $defaultNumber = DefaultNumber; | 825 $defaultNumber = DefaultNumber; |
827 $defaultString = DefaultString; | 826 $defaultString = DefaultString; |
828 $NaN = %GetRootNaN(); | 827 $NaN = %GetRootNaN(); |
829 $nonNumberToNumber = NonNumberToNumber; | 828 $nonNumberToNumber = NonNumberToNumber; |
830 $nonStringToString = NonStringToString; | 829 $nonStringToString = NonStringToString; |
831 $sameValue = SameValue; | 830 $sameValue = SameValue; |
832 $sameValueZero = SameValueZero; | 831 $sameValueZero = SameValueZero; |
833 $toInteger = ToInteger; | 832 $toInteger = ToInteger; |
834 $toLength = ToLength; | 833 $toLength = ToLength; |
835 $toName = ToName; | 834 $toName = ToName; |
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874 CONCAT_ITERABLE_TO_ARRAY, | 873 CONCAT_ITERABLE_TO_ARRAY, |
875 APPLY_PREPARE, | 874 APPLY_PREPARE, |
876 REFLECT_APPLY_PREPARE, | 875 REFLECT_APPLY_PREPARE, |
877 REFLECT_CONSTRUCT_PREPARE, | 876 REFLECT_CONSTRUCT_PREPARE, |
878 STACK_OVERFLOW, | 877 STACK_OVERFLOW, |
879 TO_NUMBER, | 878 TO_NUMBER, |
880 TO_STRING, | 879 TO_STRING, |
881 TO_NAME, | 880 TO_NAME, |
882 }); | 881 }); |
883 | 882 |
884 utils.ExportToRuntime(function(to) { | 883 %InstallToContext([ |
885 to["to_integer_fun"] = ToInteger; | 884 "concat_iterable_to_array", ConcatIterableToArray, |
886 to["to_length_fun"] = ToLength; | 885 "non_number_to_number", NonNumberToNumber, |
887 to["to_number_fun"] = ToNumber; | 886 "non_string_to_string", NonStringToString, |
888 to["to_string_fun"] = ToString; | 887 "to_integer_fun", ToInteger, |
889 }); | 888 "to_length_fun", ToLength, |
| 889 "to_name", ToName, |
| 890 "to_number_fun", ToNumber, |
| 891 "to_primitive", ToPrimitive, |
| 892 "to_string_fun", ToString, |
| 893 ]); |
890 | 894 |
891 utils.Export(function(to) { | 895 utils.Export(function(to) { |
892 to.ToBoolean = ToBoolean; | 896 to.ToBoolean = ToBoolean; |
| 897 to.ToLength = ToLength; |
| 898 to.ToName = ToName; |
893 to.ToNumber = ToNumber; | 899 to.ToNumber = ToNumber; |
| 900 to.ToPrimitive = ToPrimitive; |
894 to.ToString = ToString; | 901 to.ToString = ToString; |
895 }) | 902 }); |
896 | 903 |
897 }) | 904 }) |
OLD | NEW |