Chromium Code Reviews
chromiumcodereview-hr@appspot.gserviceaccount.com (chromiumcodereview-hr) | Please choose your nickname with Settings | Help | Chromium Project | Gerrit Changes | Sign out
(601)

Side by Side Diff: src/deoptimizer.cc

Issue 183353002: Merged r19535, r19549, r19586, r19584 into trunk branch. (Closed) Base URL: https://v8.googlecode.com/svn/trunk
Patch Set: Created 6 years, 9 months ago
Use n/p to move between diff chunks; N/P to move between comments. Draft comments are only viewable by you.
Jump to:
View unified diff | Download patch | Annotate | Revision Log
« no previous file with comments | « src/deoptimizer.h ('k') | src/mark-compact.cc » ('j') | no next file with comments »
Toggle Intra-line Diffs ('i') | Expand Comments ('e') | Collapse Comments ('c') | Show Comments Hide Comments ('s')
OLDNEW
1 // Copyright 2013 the V8 project authors. All rights reserved. 1 // Copyright 2013 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
(...skipping 2974 matching lines...) Expand 10 before | Expand all | Expand 10 after
2985 case Translation::GETTER_STUB_FRAME: 2985 case Translation::GETTER_STUB_FRAME:
2986 case Translation::SETTER_STUB_FRAME: 2986 case Translation::SETTER_STUB_FRAME:
2987 // Peeled off before getting here. 2987 // Peeled off before getting here.
2988 break; 2988 break;
2989 2989
2990 case Translation::DUPLICATED_OBJECT: { 2990 case Translation::DUPLICATED_OBJECT: {
2991 return SlotRef::NewDuplicateObject(iterator->Next()); 2991 return SlotRef::NewDuplicateObject(iterator->Next());
2992 } 2992 }
2993 2993
2994 case Translation::ARGUMENTS_OBJECT: 2994 case Translation::ARGUMENTS_OBJECT:
2995 // This can be only emitted for local slots not for argument slots. 2995 return SlotRef::NewArgumentsObject(iterator->Next());
2996 break;
2997 2996
2998 case Translation::CAPTURED_OBJECT: { 2997 case Translation::CAPTURED_OBJECT: {
2999 return SlotRef::NewDeferredObject(iterator->Next()); 2998 return SlotRef::NewDeferredObject(iterator->Next());
3000 } 2999 }
3001 3000
3002 case Translation::REGISTER: 3001 case Translation::REGISTER:
3003 case Translation::INT32_REGISTER: 3002 case Translation::INT32_REGISTER:
3004 case Translation::UINT32_REGISTER: 3003 case Translation::UINT32_REGISTER:
3005 case Translation::DOUBLE_REGISTER: 3004 case Translation::DOUBLE_REGISTER:
3006 // We are at safepoint which corresponds to call. All registers are 3005 // We are at safepoint which corresponds to call. All registers are
(...skipping 29 matching lines...) Expand all
3036 int literal_index = iterator->Next(); 3035 int literal_index = iterator->Next();
3037 return SlotRef(data->GetIsolate(), 3036 return SlotRef(data->GetIsolate(),
3038 data->LiteralArray()->get(literal_index)); 3037 data->LiteralArray()->get(literal_index));
3039 } 3038 }
3040 3039
3041 case Translation::COMPILED_STUB_FRAME: 3040 case Translation::COMPILED_STUB_FRAME:
3042 UNREACHABLE(); 3041 UNREACHABLE();
3043 break; 3042 break;
3044 } 3043 }
3045 3044
3046 UNREACHABLE(); 3045 FATAL("We should never get here - unexpected deopt info.");
3047 return SlotRef(); 3046 return SlotRef();
3048 } 3047 }
3049 3048
3050 3049
3051 SlotRefValueBuilder::SlotRefValueBuilder(JavaScriptFrame* frame, 3050 SlotRefValueBuilder::SlotRefValueBuilder(JavaScriptFrame* frame,
3052 int inlined_jsframe_index, 3051 int inlined_jsframe_index,
3053 int formal_parameter_count) 3052 int formal_parameter_count)
3054 : current_slot_(0), args_length_(-1), first_slot_index_(-1) { 3053 : current_slot_(0), args_length_(-1), first_slot_index_(-1) {
3055 DisallowHeapAllocation no_gc; 3054 DisallowHeapAllocation no_gc;
3056 3055
(...skipping 59 matching lines...) Expand 10 before | Expand all | Expand 10 after
3116 opcode != Translation::GETTER_STUB_FRAME && 3115 opcode != Translation::GETTER_STUB_FRAME &&
3117 opcode != Translation::SETTER_STUB_FRAME && 3116 opcode != Translation::SETTER_STUB_FRAME &&
3118 opcode != Translation::COMPILED_STUB_FRAME) { 3117 opcode != Translation::COMPILED_STUB_FRAME) {
3119 slot_refs_.Add(ComputeSlotForNextArgument(opcode, &it, data, frame)); 3118 slot_refs_.Add(ComputeSlotForNextArgument(opcode, &it, data, frame));
3120 3119
3121 if (first_slot_index_ >= 0) { 3120 if (first_slot_index_ >= 0) {
3122 // We have found the beginning of our frame -> make sure we count 3121 // We have found the beginning of our frame -> make sure we count
3123 // the nested slots of captured objects 3122 // the nested slots of captured objects
3124 number_of_slots--; 3123 number_of_slots--;
3125 SlotRef& slot = slot_refs_.last(); 3124 SlotRef& slot = slot_refs_.last();
3126 if (slot.Representation() == SlotRef::DEFERRED_OBJECT) { 3125 ASSERT(slot.Representation() != SlotRef::ARGUMENTS_OBJECT);
3127 number_of_slots += slot.DeferredObjectLength(); 3126 number_of_slots += slot.GetChildrenCount();
3128 }
3129 if (slot.Representation() == SlotRef::DEFERRED_OBJECT || 3127 if (slot.Representation() == SlotRef::DEFERRED_OBJECT ||
3130 slot.Representation() == SlotRef::DUPLICATE_OBJECT) { 3128 slot.Representation() == SlotRef::DUPLICATE_OBJECT) {
3131 should_deopt = true; 3129 should_deopt = true;
3132 } 3130 }
3133 } 3131 }
3134 3132
3135 processed = true; 3133 processed = true;
3136 } 3134 }
3137 if (!processed) { 3135 if (!processed) {
3138 // Skip over operands to advance to the next opcode. 3136 // Skip over operands to advance to the next opcode.
(...skipping 33 matching lines...) Expand 10 before | Expand all | Expand 10 after
3172 3170
3173 case DOUBLE: { 3171 case DOUBLE: {
3174 double value = read_double_value(addr_); 3172 double value = read_double_value(addr_);
3175 return isolate->factory()->NewNumber(value); 3173 return isolate->factory()->NewNumber(value);
3176 } 3174 }
3177 3175
3178 case LITERAL: 3176 case LITERAL:
3179 return literal_; 3177 return literal_;
3180 3178
3181 default: 3179 default:
3182 UNREACHABLE(); 3180 FATAL("We should never get here - unexpected deopt info.");
3183 return Handle<Object>::null(); 3181 return Handle<Object>::null();
3184 } 3182 }
3185 } 3183 }
3186 3184
3187 3185
3188 void SlotRefValueBuilder::Prepare(Isolate* isolate) { 3186 void SlotRefValueBuilder::Prepare(Isolate* isolate) {
3189 MaterializedObjectStore* materialized_store = 3187 MaterializedObjectStore* materialized_store =
3190 isolate->materialized_object_store(); 3188 isolate->materialized_object_store();
3191 previously_materialized_objects_ = materialized_store->Get(stack_frame_id_); 3189 previously_materialized_objects_ = materialized_store->Get(stack_frame_id_);
3192 prev_materialized_count_ = previously_materialized_objects_.is_null() 3190 prev_materialized_count_ = previously_materialized_objects_.is_null()
3193 ? 0 : previously_materialized_objects_->length(); 3191 ? 0 : previously_materialized_objects_->length();
3194 3192
3195 // Skip any materialized objects of the inlined "parent" frames. 3193 // Skip any materialized objects of the inlined "parent" frames.
3196 // (Note that we still need to materialize them because they might be 3194 // (Note that we still need to materialize them because they might be
3197 // referred to as duplicated objects.) 3195 // referred to as duplicated objects.)
3198 while (current_slot_ < first_slot_index_) { 3196 while (current_slot_ < first_slot_index_) {
3199 GetNext(isolate, 0); 3197 GetNext(isolate, 0);
3200 } 3198 }
3201 ASSERT(current_slot_ == first_slot_index_); 3199 ASSERT(current_slot_ == first_slot_index_);
3202 } 3200 }
3203 3201
3204 3202
3205 Handle<Object> SlotRefValueBuilder::GetPreviouslyMaterialized( 3203 Handle<Object> SlotRefValueBuilder::GetPreviouslyMaterialized(
3206 Isolate* isolate, int length) { 3204 Isolate* isolate, int length) {
3207 int object_index = materialized_objects_.length(); 3205 int object_index = materialized_objects_.length();
3208 Handle<Object> return_value = Handle<Object>( 3206 Handle<Object> return_value = Handle<Object>(
3209 previously_materialized_objects_->get(object_index), isolate); 3207 previously_materialized_objects_->get(object_index), isolate);
3210 materialized_objects_.Add(return_value); 3208 materialized_objects_.Add(return_value);
3211 3209
3212 // Now need to skip all nested objects (and possibly read them from 3210 // Now need to skip all the nested objects (and possibly read them from
3213 // the materialization store, too) 3211 // the materialization store, too).
3214 for (int i = 0; i < length; i++) { 3212 for (int i = 0; i < length; i++) {
3215 SlotRef& slot = slot_refs_[current_slot_]; 3213 SlotRef& slot = slot_refs_[current_slot_];
3216 current_slot_++; 3214 current_slot_++;
3217 3215
3218 // For nested deferred objects, we need to read its properties 3216 // We need to read all the nested objects - add them to the
3219 if (slot.Representation() == SlotRef::DEFERRED_OBJECT) { 3217 // number of objects we need to process.
3220 length += slot.DeferredObjectLength(); 3218 length += slot.GetChildrenCount();
3221 }
3222 3219
3223 // For nested deferred and duplicate objects, we need to put them into 3220 // Put the nested deferred/duplicate objects into our materialization
3224 // our materialization array 3221 // array.
3225 if (slot.Representation() == SlotRef::DEFERRED_OBJECT || 3222 if (slot.Representation() == SlotRef::DEFERRED_OBJECT ||
3226 slot.Representation() == SlotRef::DUPLICATE_OBJECT) { 3223 slot.Representation() == SlotRef::DUPLICATE_OBJECT) {
3227 int nested_object_index = materialized_objects_.length(); 3224 int nested_object_index = materialized_objects_.length();
3228 Handle<Object> nested_object = Handle<Object>( 3225 Handle<Object> nested_object = Handle<Object>(
3229 previously_materialized_objects_->get(nested_object_index), 3226 previously_materialized_objects_->get(nested_object_index),
3230 isolate); 3227 isolate);
3231 materialized_objects_.Add(nested_object); 3228 materialized_objects_.Add(nested_object);
3232 } 3229 }
3233 } 3230 }
3234 3231
3235 return return_value; 3232 return return_value;
3236 } 3233 }
3237 3234
3238 3235
3239 Handle<Object> SlotRefValueBuilder::GetNext(Isolate* isolate, int lvl) { 3236 Handle<Object> SlotRefValueBuilder::GetNext(Isolate* isolate, int lvl) {
3240 SlotRef& slot = slot_refs_[current_slot_]; 3237 SlotRef& slot = slot_refs_[current_slot_];
3241 current_slot_++; 3238 current_slot_++;
3242 switch (slot.Representation()) { 3239 switch (slot.Representation()) {
3243 case SlotRef::TAGGED: 3240 case SlotRef::TAGGED:
3244 case SlotRef::INT32: 3241 case SlotRef::INT32:
3245 case SlotRef::UINT32: 3242 case SlotRef::UINT32:
3246 case SlotRef::DOUBLE: 3243 case SlotRef::DOUBLE:
3247 case SlotRef::LITERAL: { 3244 case SlotRef::LITERAL: {
3248 return slot.GetValue(isolate); 3245 return slot.GetValue(isolate);
3249 } 3246 }
3247 case SlotRef::ARGUMENTS_OBJECT: {
3248 // We should never need to materialize an arguments object,
3249 // but we still need to put something into the array
3250 // so that the indexing is consistent.
3251 materialized_objects_.Add(isolate->factory()->undefined_value());
3252 int length = slot.GetChildrenCount();
3253 for (int i = 0; i < length; ++i) {
3254 // We don't need the argument, just ignore it
3255 GetNext(isolate, lvl + 1);
3256 }
3257 return isolate->factory()->undefined_value();
3258 }
3250 case SlotRef::DEFERRED_OBJECT: { 3259 case SlotRef::DEFERRED_OBJECT: {
3251 int length = slot.DeferredObjectLength(); 3260 int length = slot.GetChildrenCount();
3252 ASSERT(slot_refs_[current_slot_].Representation() == SlotRef::LITERAL || 3261 ASSERT(slot_refs_[current_slot_].Representation() == SlotRef::LITERAL ||
3253 slot_refs_[current_slot_].Representation() == SlotRef::TAGGED); 3262 slot_refs_[current_slot_].Representation() == SlotRef::TAGGED);
3254 3263
3255 int object_index = materialized_objects_.length(); 3264 int object_index = materialized_objects_.length();
3256 if (object_index < prev_materialized_count_) { 3265 if (object_index < prev_materialized_count_) {
3257 return GetPreviouslyMaterialized(isolate, length); 3266 return GetPreviouslyMaterialized(isolate, length);
3258 } 3267 }
3259 3268
3260 Handle<Object> map_object = slot_refs_[current_slot_].GetValue(isolate); 3269 Handle<Object> map_object = slot_refs_[current_slot_].GetValue(isolate);
3261 Handle<Map> map = Map::GeneralizeAllFieldRepresentations( 3270 Handle<Map> map = Map::GeneralizeAllFieldRepresentations(
(...skipping 48 matching lines...) Expand 10 before | Expand all | Expand 10 after
3310 int object_index = slot.DuplicateObjectId(); 3319 int object_index = slot.DuplicateObjectId();
3311 Handle<Object> object = materialized_objects_[object_index]; 3320 Handle<Object> object = materialized_objects_[object_index];
3312 materialized_objects_.Add(object); 3321 materialized_objects_.Add(object);
3313 return object; 3322 return object;
3314 } 3323 }
3315 default: 3324 default:
3316 UNREACHABLE(); 3325 UNREACHABLE();
3317 break; 3326 break;
3318 } 3327 }
3319 3328
3320 UNREACHABLE(); 3329 FATAL("We should never get here - unexpected deopt slot kind.");
3321 return Handle<Object>::null(); 3330 return Handle<Object>::null();
3322 } 3331 }
3323 3332
3324 3333
3325 void SlotRefValueBuilder::Finish(Isolate* isolate) { 3334 void SlotRefValueBuilder::Finish(Isolate* isolate) {
3326 // We should have processed all slot 3335 // We should have processed all slot
3327 ASSERT(slot_refs_.length() == current_slot_); 3336 ASSERT(slot_refs_.length() == current_slot_);
3328 3337
3329 if (materialized_objects_.length() > prev_materialized_count_) { 3338 if (materialized_objects_.length() > prev_materialized_count_) {
3330 // We have materialized some new objects, so we have to store them 3339 // We have materialized some new objects, so we have to store them
(...skipping 126 matching lines...) Expand 10 before | Expand all | Expand 10 after
3457 3466
3458 void DeoptimizedFrameInfo::Iterate(ObjectVisitor* v) { 3467 void DeoptimizedFrameInfo::Iterate(ObjectVisitor* v) {
3459 v->VisitPointer(BitCast<Object**>(&function_)); 3468 v->VisitPointer(BitCast<Object**>(&function_));
3460 v->VisitPointers(parameters_, parameters_ + parameters_count_); 3469 v->VisitPointers(parameters_, parameters_ + parameters_count_);
3461 v->VisitPointers(expression_stack_, expression_stack_ + expression_count_); 3470 v->VisitPointers(expression_stack_, expression_stack_ + expression_count_);
3462 } 3471 }
3463 3472
3464 #endif // ENABLE_DEBUGGER_SUPPORT 3473 #endif // ENABLE_DEBUGGER_SUPPORT
3465 3474
3466 } } // namespace v8::internal 3475 } } // namespace v8::internal
OLDNEW
« no previous file with comments | « src/deoptimizer.h ('k') | src/mark-compact.cc » ('j') | no next file with comments »

Powered by Google App Engine
This is Rietveld 408576698