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1 // Copyright 2010 the V8 project authors. All rights reserved. | 1 // Copyright 2010 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 |
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3108 __ bind(&generic_stub_call); | 3108 __ bind(&generic_stub_call); |
3109 Code* code = Builtins::builtin(Builtins::JSConstructStubGeneric); | 3109 Code* code = Builtins::builtin(Builtins::JSConstructStubGeneric); |
3110 Handle<Code> generic_construct_stub(code); | 3110 Handle<Code> generic_construct_stub(code); |
3111 __ Jump(generic_construct_stub, RelocInfo::CODE_TARGET); | 3111 __ Jump(generic_construct_stub, RelocInfo::CODE_TARGET); |
3112 | 3112 |
3113 // Return the generated code. | 3113 // Return the generated code. |
3114 return GetCode(); | 3114 return GetCode(); |
3115 } | 3115 } |
3116 | 3116 |
3117 | 3117 |
| 3118 MaybeObject* ExternalArrayStubCompiler::CompileKeyedLoadStub( |
| 3119 ExternalArrayType array_type, Code::Flags flags) { |
| 3120 // ----------- S t a t e ------------- |
| 3121 // -- rax : key |
| 3122 // -- rdx : receiver |
| 3123 // -- rsp[0] : return address |
| 3124 // ----------------------------------- |
| 3125 Label slow; |
| 3126 |
| 3127 // Check that the object isn't a smi. |
| 3128 __ JumpIfSmi(rdx, &slow); |
| 3129 |
| 3130 // Check that the key is a smi. |
| 3131 __ JumpIfNotSmi(rax, &slow); |
| 3132 |
| 3133 // Check that the object is a JS object. |
| 3134 __ CmpObjectType(rdx, JS_OBJECT_TYPE, rcx); |
| 3135 __ j(not_equal, &slow); |
| 3136 // Check that the receiver does not require access checks. We need |
| 3137 // to check this explicitly since this generic stub does not perform |
| 3138 // map checks. The map is already in rdx. |
| 3139 __ testb(FieldOperand(rcx, Map::kBitFieldOffset), |
| 3140 Immediate(1 << Map::kIsAccessCheckNeeded)); |
| 3141 __ j(not_zero, &slow); |
| 3142 |
| 3143 // Check that the elements array is the appropriate type of |
| 3144 // ExternalArray. |
| 3145 // rax: index (as a smi) |
| 3146 // rdx: JSObject |
| 3147 __ movq(rbx, FieldOperand(rdx, JSObject::kElementsOffset)); |
| 3148 __ CompareRoot(FieldOperand(rbx, HeapObject::kMapOffset), |
| 3149 Heap::RootIndexForExternalArrayType(array_type)); |
| 3150 __ j(not_equal, &slow); |
| 3151 |
| 3152 // Check that the index is in range. |
| 3153 __ SmiToInteger32(rcx, rax); |
| 3154 __ cmpl(rcx, FieldOperand(rbx, ExternalArray::kLengthOffset)); |
| 3155 // Unsigned comparison catches both negative and too-large values. |
| 3156 __ j(above_equal, &slow); |
| 3157 |
| 3158 // rax: index (as a smi) |
| 3159 // rdx: receiver (JSObject) |
| 3160 // rcx: untagged index |
| 3161 // rbx: elements array |
| 3162 __ movq(rbx, FieldOperand(rbx, ExternalArray::kExternalPointerOffset)); |
| 3163 // rbx: base pointer of external storage |
| 3164 switch (array_type) { |
| 3165 case kExternalByteArray: |
| 3166 __ movsxbq(rcx, Operand(rbx, rcx, times_1, 0)); |
| 3167 break; |
| 3168 case kExternalUnsignedByteArray: |
| 3169 __ movzxbq(rcx, Operand(rbx, rcx, times_1, 0)); |
| 3170 break; |
| 3171 case kExternalShortArray: |
| 3172 __ movsxwq(rcx, Operand(rbx, rcx, times_2, 0)); |
| 3173 break; |
| 3174 case kExternalUnsignedShortArray: |
| 3175 __ movzxwq(rcx, Operand(rbx, rcx, times_2, 0)); |
| 3176 break; |
| 3177 case kExternalIntArray: |
| 3178 __ movsxlq(rcx, Operand(rbx, rcx, times_4, 0)); |
| 3179 break; |
| 3180 case kExternalUnsignedIntArray: |
| 3181 __ movl(rcx, Operand(rbx, rcx, times_4, 0)); |
| 3182 break; |
| 3183 case kExternalFloatArray: |
| 3184 __ cvtss2sd(xmm0, Operand(rbx, rcx, times_4, 0)); |
| 3185 break; |
| 3186 default: |
| 3187 UNREACHABLE(); |
| 3188 break; |
| 3189 } |
| 3190 |
| 3191 // rax: index |
| 3192 // rdx: receiver |
| 3193 // For integer array types: |
| 3194 // rcx: value |
| 3195 // For floating-point array type: |
| 3196 // xmm0: value as double. |
| 3197 |
| 3198 ASSERT(kSmiValueSize == 32); |
| 3199 if (array_type == kExternalUnsignedIntArray) { |
| 3200 // For the UnsignedInt array type, we need to see whether |
| 3201 // the value can be represented in a Smi. If not, we need to convert |
| 3202 // it to a HeapNumber. |
| 3203 NearLabel box_int; |
| 3204 |
| 3205 __ JumpIfUIntNotValidSmiValue(rcx, &box_int); |
| 3206 |
| 3207 __ Integer32ToSmi(rax, rcx); |
| 3208 __ ret(0); |
| 3209 |
| 3210 __ bind(&box_int); |
| 3211 |
| 3212 // Allocate a HeapNumber for the int and perform int-to-double |
| 3213 // conversion. |
| 3214 // The value is zero-extended since we loaded the value from memory |
| 3215 // with movl. |
| 3216 __ cvtqsi2sd(xmm0, rcx); |
| 3217 |
| 3218 __ AllocateHeapNumber(rcx, rbx, &slow); |
| 3219 // Set the value. |
| 3220 __ movsd(FieldOperand(rcx, HeapNumber::kValueOffset), xmm0); |
| 3221 __ movq(rax, rcx); |
| 3222 __ ret(0); |
| 3223 } else if (array_type == kExternalFloatArray) { |
| 3224 // For the floating-point array type, we need to always allocate a |
| 3225 // HeapNumber. |
| 3226 __ AllocateHeapNumber(rcx, rbx, &slow); |
| 3227 // Set the value. |
| 3228 __ movsd(FieldOperand(rcx, HeapNumber::kValueOffset), xmm0); |
| 3229 __ movq(rax, rcx); |
| 3230 __ ret(0); |
| 3231 } else { |
| 3232 __ Integer32ToSmi(rax, rcx); |
| 3233 __ ret(0); |
| 3234 } |
| 3235 |
| 3236 // Slow case: Jump to runtime. |
| 3237 __ bind(&slow); |
| 3238 __ IncrementCounter(&Counters::keyed_load_external_array_slow, 1); |
| 3239 |
| 3240 // ----------- S t a t e ------------- |
| 3241 // -- rax : key |
| 3242 // -- rdx : receiver |
| 3243 // -- rsp[0] : return address |
| 3244 // ----------------------------------- |
| 3245 |
| 3246 __ pop(rbx); |
| 3247 __ push(rdx); // receiver |
| 3248 __ push(rax); // name |
| 3249 __ push(rbx); // return address |
| 3250 |
| 3251 // Perform tail call to the entry. |
| 3252 __ TailCallRuntime(Runtime::kKeyedGetProperty, 2, 1); |
| 3253 |
| 3254 // Return the generated code. |
| 3255 return GetCode(flags); |
| 3256 } |
| 3257 |
| 3258 |
| 3259 MaybeObject* ExternalArrayStubCompiler::CompileKeyedStoreStub( |
| 3260 ExternalArrayType array_type, Code::Flags flags) { |
| 3261 // ----------- S t a t e ------------- |
| 3262 // -- rax : value |
| 3263 // -- rcx : key |
| 3264 // -- rdx : receiver |
| 3265 // -- rsp[0] : return address |
| 3266 // ----------------------------------- |
| 3267 Label slow; |
| 3268 |
| 3269 // Check that the object isn't a smi. |
| 3270 __ JumpIfSmi(rdx, &slow); |
| 3271 // Get the map from the receiver. |
| 3272 __ movq(rbx, FieldOperand(rdx, HeapObject::kMapOffset)); |
| 3273 // Check that the receiver does not require access checks. We need |
| 3274 // to do this because this generic stub does not perform map checks. |
| 3275 __ testb(FieldOperand(rbx, Map::kBitFieldOffset), |
| 3276 Immediate(1 << Map::kIsAccessCheckNeeded)); |
| 3277 __ j(not_zero, &slow); |
| 3278 // Check that the key is a smi. |
| 3279 __ JumpIfNotSmi(rcx, &slow); |
| 3280 |
| 3281 // Check that the object is a JS object. |
| 3282 __ CmpInstanceType(rbx, JS_OBJECT_TYPE); |
| 3283 __ j(not_equal, &slow); |
| 3284 |
| 3285 // Check that the elements array is the appropriate type of |
| 3286 // ExternalArray. |
| 3287 // rax: value |
| 3288 // rcx: key (a smi) |
| 3289 // rdx: receiver (a JSObject) |
| 3290 __ movq(rbx, FieldOperand(rdx, JSObject::kElementsOffset)); |
| 3291 __ CompareRoot(FieldOperand(rbx, HeapObject::kMapOffset), |
| 3292 Heap::RootIndexForExternalArrayType(array_type)); |
| 3293 __ j(not_equal, &slow); |
| 3294 |
| 3295 // Check that the index is in range. |
| 3296 __ SmiToInteger32(rdi, rcx); // Untag the index. |
| 3297 __ cmpl(rdi, FieldOperand(rbx, ExternalArray::kLengthOffset)); |
| 3298 // Unsigned comparison catches both negative and too-large values. |
| 3299 __ j(above_equal, &slow); |
| 3300 |
| 3301 // Handle both smis and HeapNumbers in the fast path. Go to the |
| 3302 // runtime for all other kinds of values. |
| 3303 // rax: value |
| 3304 // rcx: key (a smi) |
| 3305 // rdx: receiver (a JSObject) |
| 3306 // rbx: elements array |
| 3307 // rdi: untagged key |
| 3308 NearLabel check_heap_number; |
| 3309 __ JumpIfNotSmi(rax, &check_heap_number); |
| 3310 // No more branches to slow case on this path. Key and receiver not needed. |
| 3311 __ SmiToInteger32(rdx, rax); |
| 3312 __ movq(rbx, FieldOperand(rbx, ExternalArray::kExternalPointerOffset)); |
| 3313 // rbx: base pointer of external storage |
| 3314 switch (array_type) { |
| 3315 case kExternalByteArray: |
| 3316 case kExternalUnsignedByteArray: |
| 3317 __ movb(Operand(rbx, rdi, times_1, 0), rdx); |
| 3318 break; |
| 3319 case kExternalShortArray: |
| 3320 case kExternalUnsignedShortArray: |
| 3321 __ movw(Operand(rbx, rdi, times_2, 0), rdx); |
| 3322 break; |
| 3323 case kExternalIntArray: |
| 3324 case kExternalUnsignedIntArray: |
| 3325 __ movl(Operand(rbx, rdi, times_4, 0), rdx); |
| 3326 break; |
| 3327 case kExternalFloatArray: |
| 3328 // Need to perform int-to-float conversion. |
| 3329 __ cvtlsi2ss(xmm0, rdx); |
| 3330 __ movss(Operand(rbx, rdi, times_4, 0), xmm0); |
| 3331 break; |
| 3332 default: |
| 3333 UNREACHABLE(); |
| 3334 break; |
| 3335 } |
| 3336 __ ret(0); |
| 3337 |
| 3338 __ bind(&check_heap_number); |
| 3339 // rax: value |
| 3340 // rcx: key (a smi) |
| 3341 // rdx: receiver (a JSObject) |
| 3342 // rbx: elements array |
| 3343 // rdi: untagged key |
| 3344 __ CmpObjectType(rax, HEAP_NUMBER_TYPE, kScratchRegister); |
| 3345 __ j(not_equal, &slow); |
| 3346 // No more branches to slow case on this path. |
| 3347 |
| 3348 // The WebGL specification leaves the behavior of storing NaN and |
| 3349 // +/-Infinity into integer arrays basically undefined. For more |
| 3350 // reproducible behavior, convert these to zero. |
| 3351 __ movsd(xmm0, FieldOperand(rax, HeapNumber::kValueOffset)); |
| 3352 __ movq(rbx, FieldOperand(rbx, ExternalArray::kExternalPointerOffset)); |
| 3353 // rdi: untagged index |
| 3354 // rbx: base pointer of external storage |
| 3355 // top of FPU stack: value |
| 3356 if (array_type == kExternalFloatArray) { |
| 3357 __ cvtsd2ss(xmm0, xmm0); |
| 3358 __ movss(Operand(rbx, rdi, times_4, 0), xmm0); |
| 3359 __ ret(0); |
| 3360 } else { |
| 3361 // Perform float-to-int conversion with truncation (round-to-zero) |
| 3362 // behavior. |
| 3363 |
| 3364 // Convert to int32 and store the low byte/word. |
| 3365 // If the value is NaN or +/-infinity, the result is 0x80000000, |
| 3366 // which is automatically zero when taken mod 2^n, n < 32. |
| 3367 // rdx: value (converted to an untagged integer) |
| 3368 // rdi: untagged index |
| 3369 // rbx: base pointer of external storage |
| 3370 switch (array_type) { |
| 3371 case kExternalByteArray: |
| 3372 case kExternalUnsignedByteArray: |
| 3373 __ cvttsd2si(rdx, xmm0); |
| 3374 __ movb(Operand(rbx, rdi, times_1, 0), rdx); |
| 3375 break; |
| 3376 case kExternalShortArray: |
| 3377 case kExternalUnsignedShortArray: |
| 3378 __ cvttsd2si(rdx, xmm0); |
| 3379 __ movw(Operand(rbx, rdi, times_2, 0), rdx); |
| 3380 break; |
| 3381 case kExternalIntArray: |
| 3382 case kExternalUnsignedIntArray: { |
| 3383 // Convert to int64, so that NaN and infinities become |
| 3384 // 0x8000000000000000, which is zero mod 2^32. |
| 3385 __ cvttsd2siq(rdx, xmm0); |
| 3386 __ movl(Operand(rbx, rdi, times_4, 0), rdx); |
| 3387 break; |
| 3388 } |
| 3389 default: |
| 3390 UNREACHABLE(); |
| 3391 break; |
| 3392 } |
| 3393 __ ret(0); |
| 3394 } |
| 3395 |
| 3396 // Slow case: call runtime. |
| 3397 __ bind(&slow); |
| 3398 |
| 3399 // ----------- S t a t e ------------- |
| 3400 // -- rax : value |
| 3401 // -- rcx : key |
| 3402 // -- rdx : receiver |
| 3403 // -- rsp[0] : return address |
| 3404 // ----------------------------------- |
| 3405 |
| 3406 __ pop(rbx); |
| 3407 __ push(rdx); // receiver |
| 3408 __ push(rcx); // key |
| 3409 __ push(rax); // value |
| 3410 __ push(rbx); // return address |
| 3411 |
| 3412 // Do tail-call to runtime routine. |
| 3413 __ TailCallRuntime(Runtime::kSetProperty, 3, 1); |
| 3414 |
| 3415 return GetCode(flags); |
| 3416 } |
| 3417 |
3118 #undef __ | 3418 #undef __ |
3119 | 3419 |
3120 } } // namespace v8::internal | 3420 } } // namespace v8::internal |
3121 | 3421 |
3122 #endif // V8_TARGET_ARCH_X64 | 3422 #endif // V8_TARGET_ARCH_X64 |
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